Completed Doctoral Dissertations
Julius Marhenke: Polydimethylsiloxane-based Microfluidic Devices for Separating Particle Systems by Deterministic Lateral Displacement
Title (German): Polydimethylsiloxan basierte Mikrofluidiksysteme zur Separation von Partikelsystemen nach dem Prinzip der Deterministischen Lateralen Auslenkung
Language of dissertation: Englisch
Supervisor: Prof. Dr. Nicolas Vogel
Available as: Library deposited pdf obtainable here https://open.fau.de/handle/openfau/38756
FAU library shelfmark/location: Online siehe Permalink
Abstract (English):
The separation of particles in microfluidic devices is a fast-growing area of research as it offers the potential for more precise, faster, and reliable separation than conventional techniques while also enabling point-of-care applications. Deterministic Lateral Displacement (DLD) devices are fascinating due to their excellent particle size resolution and numerous potential parameters to manipulate and tune device performance.
For many applications, the throughput of microfluidic devices is a relevant factor. DLD devices especially exhibit inherent high hydraulic resistance, which can result in high operational pressures. This trend is even further intensified if structure dimensions in the device are decreased to separate even smaller particles in the sub-micrometer or nanometer regime. Furthermore, polydimethylsiloxane (PDMS) is a popular material for rapid microfluidic device manufacturing, as it offers fast, easy, and cheap prototyping. However, PDMS’s soft and flexible nature can pose manufacturing and operational challenges.
In this thesis, the manufacturing of PDMS-based DLD devices is investigated and optimized to achieve reliable manufacturing. While different approaches were evaluated, the best manufacturing process was based on PDMS molding from master structures processed with SU-8 lithography. With this approach, precise pillar structures with spacing down to 2.7 µm and heights of 32 µm were manufactured, enabling higher device throughputs than shallower devices with just 3 to 4 µm height reported in the literature.
The separation characteristics of different DLD devices were evaluated in-depth. The DLD device design with the smallest critical diameter could reliably separate particles in the sub-micrometer regime, which was only scarcely shown before for PDMS-based devices. Furthermore, the operation of DLD devices at increased flow rates to achieve higher throughput was investigated. DLD devices capable of separating particles in the sub-micrometer regime operating at up to 80 times increased throughput compared to the literature were realized. However, pronounced PDMS structure deformations at increased flow rates were encountered and had to be reduced. A strategy to minimize deformations by thermal stiffness tuning of PDMS was developed. An appropriate thermal treatment increased PDMS stiffness by roughly 69 %. However, the reduced structural deformation also affected throughput limits as the pressure in the DLD devices was higher compared to DLD devices without the thermal treatment.
In the end, a model was derived to describe and explain the structural deformation and throughput limitations encountered in PDMS-based DLD devices with different PDMS stiffnesses. Furthermore, the model can also be applied to predict the separation performance of DLD devices operating at different flow rates. Thus, it is an excellent tool for DLD device design.
Abstract (German):
Die Separation von Partikeln in Mikrofluidiksystemen ist ein schnell wachsendes Forschungsfeld da potenziell eine genauere, schnellere und zuverlässigere Separation als mit konventionellen Verfahren sowie die Umsetzung von Vorort-Anwendungen (engl.: point-of-care) ermöglicht wird. Systeme nach dem Prinzip der deterministischen lateral Auslenkung (engl.: deterministic lateral displacement (DLD)) sind hierfür aufgrund ihrer ausgezeichneten Partikelgrößenauflösung und zahlreichen Parameter zur Anpassung der Systemleistung von besonderer Bedeutung.
Für viele Anwendungen ist der Durchsatz der Mikrofluidiksystemen ein relevanter Faktor. Besonders DLD-Systeme besitzen einen inhärent hohen hydraulischen Widerstand, welcher zur hohen Betriebsdrücken führen kann. Diese Tendenz verstärkt sich weiter, falls die Dimensionen von Strukturen in den Systemen reduziert werden um die Separation von kleineren Partikeln bis in den sub-Mikrometer- und Nanometerbereich zu ermöglichen. Des Weiteren wird gerne Polydimethylsiloxan (PDMS) für eine schnelle, einfache und günstige Prototypenherstellung verwendet. Jedoch können aufgrund der weichen und flexiblen Natur des PDMS weitere Herausforderungen für die Herstellung und den Betrieb erwachsen.
In dieser Arbeit wird die Herstellung von PDMS basierten DLD-Systemen untersucht und optimiert, um eine zuverlässige Herstellung zu erreichen. Hierfür wurden unterschiedliche Ansätze evaluiert, wobei das beste Herstellungsverfahren auf einem Abformungsprozess mit PDMS von einer Schablone basierte, die mittels eines Lithographieprozess unter Anwendung des Photolacks SU-8 hergestellt wurde. Mit diesem Prozess wurde die präzise Herstellung von Säulenstrukturen mit Abständen bis herab zu 2,7 μm und Höhen von 32 μm realisiert, so dass eine Durchsatzerhöhung im Vergleich zu Systemen aus der Literatur, welche lediglich Höhen von 3 bis 4 μm besaßen, ermöglicht wurde.
Die Separationscharakteristika unterschiedlicher DLD-Systeme wurden tiefergehend untersucht. Die Systeme mit dem geringsten kritischen Durchmesser konnten zuverlässig Partikel im sub-Mikrometerbereich auftrennen, was zuvor nur vereinzelt für PDMS basierte Systeme gezeigt wurde. Des Weiteren wurde der Betrieb der DLD-Systeme bei erhöhten Flussraten zur Durchsatzsteigerung untersucht. Für die DLD-Systeme, welche eine Partikelseparation im sub-Mikrometerbereich ermöglichten, konnte eine Durchsatzsteigerung um einen Faktor von 80 im Vergleich zu Literatursystemen erzielt werden. Jedoch sind ausgeprägte Verformungen der PDMS-Strukturen aufgrund der Durchsatzsteigerung aufgetreten und mussten eingegrenzt werden. Daraufhin wurde eine Strategie zur Reduzierung der Deformation beruhend auf einer thermischen Versteifung des PDMS entwickelt. Eine geeignete thermische Behandlung erhöhte die Steifigkeit des PDMS um 69 %. Allerdings beeinflusste die reduzierte Deformierbarkeit der Strukturen auch das Durchsatzlimit, da der Druck in den DLD-Systemen höher ausfällt als in den Systemen ohne thermische Behandlung.
Schlussendlich wurde ein Modell erarbeitet um die Strukturdeformationen und Durchsatzlimitierungen, die in den PDMS basierten DLD-Systemen mit unterschiedlichen Steifigkeiten angetroffen wurden, zu beschreiben und zu erklären. Darüber hinaus kann mittels des Modells die Separationsleistung von DLD-Systemen bei unterschiedlichen Durchflussraten abgeschätzt werden. Somit wurde ein exzellentes Hilfsmittel für den Auslegungsprozess von DLD-Systemen geschaffen.
Gudrun Bleyer :Optimized Design of Structure-based Color
Title (German): Optimiertes Design strukturbasierter Farbe
Language of dissertation: Englisch
Supervisor: Prof. Dr. Nicolas Vogel
Available as: Library deposited pdf obtainable here https://open.fau.de/handle/openfau/38671
FAU library shelfmark/location: Online siehe Permalink
Abstract (English):
The ambitions of this work are twofold. Firstly, inspired by the stunning iridescent structural colors in nature, optimal designs for artificial colloidal photonic crystals for maximum color saturation are to be identified. It is well known that the inclusion of absorbing material can enhance this saturation, but the various methodologies and resulting material distributions are rarely compared in a quantitative manner. It is thus unclear if and how the arrangement of absorbing elements impacts the color properties. To investigate this question, suitable colloidal building blocks, characterization methods and assembly methods to create colloidal crystals with adjustable material distributions are implemented. The large design space of structural color (material, placement, structure etc.) motivates the second aspect of this work: predictive design of color properties of nanomaterials. A model connecting the structure and material to the desired target color property (color difference, chroma) is established and inverted to determine optimized structure designs to reach said targets. This concept is applied to the original design question of absorber placement in colloidal photonic crystals and – to show versatility – to plasmonic color. The resulting structure design blueprints are experimentally realized, and the resulting color properties are compared to the predicted ones.
Through this work, insights into the absorber influence and the predictive design approach are gained. The position and the distribution of the absorbing material have a significant impact on the resulting color chroma, a measure of color vividness. The predictive design blueprints, confirmed by experimental results, show that at equal color lightness, the placement of the absorber at the bottom of the structure will lead to the highest possible chroma. In the case of plasmonic color, multiple viable structure designs to realize a desired color are identified. The models help identify qualitative design rules to achieve the target and exclude unsuitable designs for both structure-based color mechanisms. This confirms that predictive design saves time and resources in optimizing color properties. A close match between model and experiment is essential for a high quantitative agreement of the predictive tool and reality. More complex models accounting for experimental dispersity could further improve accuracy but increase computational costs. Thus, predictive design is identified as a promising tool for future design questions of nanoparticular (color) properties, given that experimental and simulated boundary conditions are matched closely and simplifications in the model are carefully tailored to the use case.
Abstract (German):
Diese Arbeit hat zwei Schwerpunkte. Der erste ist die Herstellung von künstlichen kolloidalen photonischen Kristallen mit optimierter Farbsättigung und wurde von den beeindruckend schillernden Farben der Natur inspiriert. Es ist weithin bekannt, dass die Farbsättigung von Strukturfarben durch absorbierendes Material erhöht werden kann. Es gibt hierfür vielerlei Methoden. Unklar ist jedoch, ob und wie die aus diesen Methoden resultierenden, unterschiedlichen Absorbermaterialverteilungen die Eigenschaften der Farbe beeinflussen. Zur Beantwortung dieser Frage werden geeignete kolloidale Bausteine, Charakterisierungs- und Anordnungsmethoden eingesetzt, wodurch die Verteilung des Absorbermaterials im Kristall regulierbar wird. Um der Fülle an Designparametern (Material, Position, Struktur usw.) bei der Strukturfarbenherstellung gerecht zu werden, fokussiert sich der zweite Schwerpunkt dieser Arbeit auf das prädiktive (vorhersagende) Design der Farbeigenschaften nanopartikulären Materials. Dafür werden in einem Modell Struktur- und Materialspezifikationen mit den gewünschten Zieleigenschaften der Farben (Farbunterschiede, Chroma) verknüpft und das Modell anschließend invertiert, um Struktur und Material auf diese Zielwerte zu optimieren. Dieses Vorgehen wird genutzt, um die Absorbermaterialverteilung im kolloidalen Kristall zu ermitteln und – um Vielseitigkeit zu zeigen – Partikelstrukturen für plasmonische Farben zu identifizieren. Die ermittelten Designvorlagen werden experimentell hergestellt und ihre Farbeigenschaften mit den Vorhersagen des Modells verglichen.
Im Verlauf dieser Arbeit werden neue Erkenntnisse zu Strukturfarbe und zu der Anwendung von prädiktivem Design gewonnen. Bei der Farboptimierung von kolloidalen Kristallen zeigt das prädiktive Modell, dass eine Positionierung des Absorbers in den unteren Schichten der Struktur zum höchstmöglichen Chroma führt. Ein weiteres Modell identifiziert mehrere plasmonische Strukturen mit vorgegeben Wunschfarben. Beide Modelle werden experimentell qualitativ bestätigt. Da mithilfe der Modelle ungeeignete Strukturen und Materialien ausgeschlossen und allgemeine, qualitative Design-Regeln identifiziert werden können, spart ihre Verwendung Zeit und Ressource. Das genaue Abstimmen von Modell und Experiment ist für die quantitative Übereinstimmung essenziell. Diese könnte durch komplexere Modelle einschließlich experimenteller Abweichung verbessert werden, was jedoch höhere Rechenkosten zur Folge hätte. Prädiktives Design ist also ein vielversprechendes Werkzeug bei der zukünftigen Entwicklung von (Farb-) Eigenschaften von Nanomaterialien, vorausgesetzt die experimentellen und simulierten Randbedingungen werden sorgfältig aufeinander angepasst und mögliche Vereinfachungen dem Anwendungsfall entsprechend gewählt.
Umair Sultan: Development of hierarchically structured porous particles and surfaces
Title (German): Entwicklung hierarchisch strukturierter poröser Partikel und Oberflächen
Language of dissertation:
Supervisor: Prof. Dr. Nicolas Vogel
Available as: Library deposited pdf obtainable here https://open.fau.de/handle/openfau/38625
FAU library shelfmark/location: Online siehe Permalink
Abstract (English):
Porous materials are indispensable in modern technology, with applications spanning catalysis, energy conversion, separation systems, and advanced surface engineering. In this thesis, we present strategies for the design and scalable production of hierarchical structured porous particles with tunable porosity, surface roughness features, and mechanical stability, and demonstrate their potential across diverse applications. We first explore the synthesis of large-pore mesoporous primary particles by incorporating renewable, bio-based pore expander limonene and validate their effective use as a replacement of conventional fossil-based expander trimethylbenzene. Using spray drying, we then control scalable fabrication of supraparticle powders with hierarchical pore networks spanning meso- to macro-scales. The supraparticles are then employed as model systems to study the role of surface roughness in liquid marble systems, where rougher supraparticles enable stabilization of lower surface tension liquids and enhance mechanical robustness. Next, we develop environmentally benign, scalable superhydrophobic coatings by spray-coating supraparticles, and optimized durability through a combination of binder addition and thermal sintering strategies. The tunable pore networks of supraparticles are further employed as supports in catalytically active liquid metal solutions (SCALMS) for propane dehydrogenation, where pore size and structure are found to govern droplet immobilization and catalytic stability. We investigate the structure-property relation of stationary phase materials in nanoparticle chromatography using supraparticles as model stationary phases. Finally, we introduce a new method to produce hierarchical porous particles with open, accessible pore networks via polymerization-induced spinodal decomposition method in emulsions, overcoming limitations of dense shell formation in such systems.
Abstract (German):
Poröse Materialien sind in modernen Technologien unverzichtbar und finden Anwendungen in Katalyse, Energieumwandlung, Trennsystemen und der fortschrittlichen Oberflächentechnik. In dieser Arbeit zeigen wir Strategien zur Gestaltung und skalierbaren Herstellung hierarchisch strukturierter poröser Partikel mit einstellbarer Porosität, Oberflächenrauigkeit und mechanischer Stabilität und demonstrieren deren Potenzial in verschiedenen Anwendungsbereichen. Zunächst untersuchen wir die Synthese großporiger mesoporöser Primärpartikel durch den Einsatz eines nachwachsenden, biobasierten Porenexpanders Limonen und validieren dessen wirksamen Einsatz als Ersatz für den herkömmlichen fossilen Expander Trimethylbenzol. Mittels Sprühtrocknung steuern wir anschließend die skalierbare Herstellung von Suprapartikelpulvern mit hierarchischen Porennetzwerken im Meso- bis Makrobereich. Die Suprapartikel werden dann als Modellsysteme eingesetzt, um die Rolle der Oberflächenrauigkeit in Liquid Marble Systemen zu untersuchen, wobei rauere Suprapartikel die Stabilisierung von Flüssigkeiten mit niedrigerer Oberflächenspannung ermöglichen und die mechanische Robustheit erhöhen. Anschließend entwickeln wir umweltfreundliche, skalierbare superhydrophobe Beschichtungen durch Sprühbeschichtung von Suprapartikeln und optimieren deren Haltbarkeit durch eine Kombination aus Binderzugabe und thermischen Sinterstrategien. Die einstellbaren Porennetzwerke der Suprapartikel werden ferner als Träger in katalytisch aktiven Flüssigmetalllösungen (SCALMS) für die Propandehydrierung eingesetzt, wobei sich zeigt, dass Porengröße und -struktur die Tröpfchenimmobilisierung und die katalytische Stabilität beeinflussen. Wir untersuchen die Struktur-Eigenschafts-Beziehung von stationären Phasenmaterialien in der Nanopartikelchromatographie, wobei Suprapartikel als Modellstationärphasen dienen. Schließlich stellen wir eine neue Methode zur Herstellung hierarchisch poröser Partikel mit offenen, zugänglichen Porennetzwerken vor, die auf polymerisationsinduzierter spinodaler Entmischung in Emulsionen basiert und die Einschränkungen der Bildung dichter Schalen in solchen Systemen überwindet.
Julian D. Esper: Targeted shape formation of glasses inside a stirred media mill and their potential application as novel anode materials in next generation lithium-ion batteries
Title (German): Gezielte Formgebung von Gläsern in einer Rührwerkskugelmühle als neuartige Anoden in Lithium-Ionen-Batterien
Language of dissertation: English
Supervisor: Prof. Dr. Wolfgang Peukert
Available as: Library deposited pdf obtainable here https://open.fau.de/handle/openfau/36723
FAU library shelfmark/location: Online
Abstract (English): Wet comminution in stirred media mills is a well-established, scalable and versatile top-down processing unit operation in process engineering as well as particle technology. Mills are designed to effectively stress particles and reduce their respective particle size. Here, mostly crystalline materials and their respective material-specific size reduction behavior has been studied. Though, recent publications have shown that vitreous materials, namely SiO2 glass, can be plastically deformed to yield flake-like particles using the right comminution solvent. However, no comprehensive experimental study has been published for different glasses, studying the influence of different process parameters on the deformation behavior during stressing in a stirred media mill.
Within the framework of this experimental work, the comminution and deformation behavior of three commercially available glasses, namely SiO2, soda lime and borosilicate glass, was investigated as a function of different process parameters in a stirred media mill. Process parameters were varied by altering the respective stress energies, due to different stirring speeds and grinding bead diameters, and stress numbers, due to varying processing times. Significant particle size reduction was observed in the first hour of stressing followed by prolonged deformation stage, resulting in the formation of flake-like particles with high aspect ratios. Deformation behavior is significantly influenced by the glass compositions, here the addition of glass network formers such as B2O3 or glass network modifiers such as CaO or Na2O result in a softer glass prone to increased plasticity rather than brittle fracture in the submicron particle size range. The altered mechanical behavior can even be observed on the macroscopic scale in terms of reduced Young’s modulus as well as Poisson ratio. Naturally, a stressing limit in terms of resulting particle size can be observed for all chosen process parameters and glass systems. Furthermore, the complementary micromechanical characterization of sodalime and borosilicate glass single particles in the size range of 0.4 – 4.0 μm was conducted using an electron microscopy supported in situ micromanipulation device. The broad particle size range was chosen to assess possible size-dependent deformation phenomena, commonly seen for SiO2 glass particles.
The evaluation of experimental deformation data with well-established contact and deformation models, gave access to mechanical properties such as Young’s modulus and revealed increased plasticity with decreasing particle size. For both glass systems, no significant fragmentation behavior was observed for a certain particle size range. After initial plastic deformation, both glasses show the formation of surface cracks in the meridian plane to relieve compressional stress and release elastically stored energy. However, further plastic deformation did not result in catastrophic failure in terms of fatal fragmentation into several fragments, yet further surface cracks formed accompanied by subsequent plastic deformation, yielding flake-like particles with high aspect ratios over a broad particle size range. Both glasses showed increased plasticity compared to SiO2 glass, which can be directly linked to the chemical composition and therefore altered glass structure, since both studied glass systems can be characterized as multicomponent glasses.
In the second part of this thesis, the knowledge gained was used to produce glasses with tailored chemical compositions via a simple melt quenching technique. Here, two common glass network formers, namely B2O3 and SiO2 were used to incorporate electrochemically active components, such as Co3O4 and GeO2, into the glass matrix. The as-produced glasses were subsequently processed and shaped into flake-like particles using the previously explored wet comminution process. It was found that the shown brittle-to-ductile transition held true for all produced glasses, confirming the versatility of the technique without limitations in regard to the chemical composition. Electrochemical characterization as novel anode materials in lithium-ion-batteries showed that all compositions showed electrochemical activity towards Li-ions. In particular, the influence of particle size (and therefore shape) on lithiation behavior and cycling stability was investigated. Electrochemical characterization revealed a strong influence of the chemical composition as well as particle size on the electrochemical activity, lithiation behavior and cycling stability. In total, decreasing the particle size and therefore increasing the mass-specific surface area had a positive effect on the cycling stability of the investigated glasses. Especially glasses containing less than 25 mol.-% GeO2, either B2O3- or SiO2 based, showed promising specific capacities with good capacity retention after 100 galvanostatic discharge-charge cycles. Lastly, based on previously elaborated electrochemical results, a targeted heat treatment was performed on a chosen SiO2-GeO2 glass composition to study the influence of partial crystallization on the electrochemical cycling behavior. The study displays that a suitable annealing can induce the crystallization of Ge-rich GexSiyO6 (2 ≤ x ≤ 3; 0.1 ≤ y ≤ 1) crystallites embedded in a SiO2-GeO2 glass matrix that can function as electrochemically active sites for the reaction with Li-ions. The proposed glass-ceramic material could convince with improved electrochemical activity during initial discharge, good lithiation kinetics and cycling stability at various charging currents.
Abstract (German): Die Nasszerkleinerung in Rührwerksmühlen ist ein bereits etabliertes, skalierbares und vielseitiges Top-Down-Verfahren in der Verfahrens- und Partikeltechnik. Rührwerkskugelmühlen sind darauf ausgelegt, Produktpartikel effektiv zu beanspruchen und gezielt die Partikelgröße zu reduzieren und massenspezifische Oberfläche zu vergrößern. Dabei wurde insbesondere der Einfluss verschiedener Versuchsparameter auf das materialspezifische Zerkleinerungsverhalten an kristallinen Materialien studiert. Jedoch haben jüngste Veröffentlichungen gezeigt, dass Gläser oder glasartige Festkörper, hauptsächlich Stöber-Fink-Bohn Silica oder auch Dentalglas, unter Anwendung eines geeigneten Zerkleinerungslösemittels gezielt plastisch deformiert werden können. Dabei entstehen plättchenförmige Partikel mit hohen Aspektverhältnissen statt unförmigem Mahlgut. Bis jetzt wurde jedoch keine umfassende experimentelle Studie für verschiedene Gläser veröffentlicht, die den Einfluss verschiedener Prozessparameter auf das Deformationsverhalten während der Beanspruchung in einer Rührwerksmühle gezielt untersucht. Im Rahmen dieser experimentellen Arbeit wurde das Zerkleinerungs- und Deformationsverhalten von drei handelsüblichen Gläsern, nämlich SiO2 Glas, Kalknatronglas sowie Borosilikatglas in Abhängigkeit verschiedener Prozessparameter in einer Rührwerkskugelmühle untersucht. Basierend auf einem Model von Kwade wurden die Belastungsintensität und die Belastungszahl gezielt durch Variation von Rührergeschwindigkeit, Mahlkörpergröße und Mahldauer eingestellt. Die Ergebnisse zeigten, dass für alle Prozessbedingungen die eigentliche Zerkleinerung mit Sprödbruch innerhalb der ersten Prozessstunde der dominierende Mechanismus war. Hier konnte für alle Gläser eine signifikante Verringerung der Partikelgröße festgestellt werden. Im Anschluss daran konnte eine längere Deformationsphase, geprägt von plastischer Deformation der Einzelpartikel, beobachtet werden. Dabei bildeten alle untersuchten Gläser plättchenförmige Partikeln mit hohen Aspektverhältnissen. Das mechanische Verhalten der Gläser wird dabei maßgeblich von der Zusammensetzung beeinflusst. Die Zugabe von Glasbildnern, wie z.B. B2O3, oder Glasmodifizieren, wie z.B. CaO oder Na2O, führen zu duktileren Gläsern. Dies ist auf der makroskopischen Ebene durch die Abnahme des E-Moduls und der Poisson Zahl zu beobachten. Die Gläser weisen eine erhöhte Plastizität auf und neigen zu duktilem Verhalten statt Sprödbruch im submikronen Bereich.
Ergänzend wurde das mikromechanische Deformationsverhalten von Einzelpartikeln über einen breiten Partikelgrößenbereich mithilfe eines in situ Rasterelektronenmikroskopie-gestützten Mikromanipulators untersucht. Hier konnte für sowohl Kalknatronglas als auch Borosilikatglas eine ausgeprägte Plastizität in einem Größenbereich von 0.4 – 4 μm beobachtet werden. Die Auswertung der experimentellen Daten erfolgte dabei anhand etabliertet Kontakt- sowie Deformationsmodelle, die den Zugang zu mechanischen Eigenschaften wie dem E-Modul der Einzelpartikel ermöglichen und eine zunehmende Plastizität mit abnehmender Partikelgröße bestätigten. Für beide Glassysteme konnte über einen bestimmten Partikelgrößenbereich kein signifikantes Fragmentierungsverhalten beobachtet werden. Nach einer anfänglichen plastischen Deformation zeigten beide Gläser Spannungsabbau durch Bildung von Oberflächenrissen in der Meridianebene. Im Anschluss weitere Beanspruchung führte jedoch nicht zu einem katastrophalen Versagen, durch Fragmentierung in mehrere Bruchstücke, sondern zur Ausbildung weitere Oberflächenrisse mit einhergehender plastischer Deformation. Die Bildung von plättchenförmigen Partikeln mit großen Aspektverhältnissen konnte bestätigt werden. Das veränderte mikromechanische Verhalten bieder Gläser lässt sich auf die Zusammensetzung und damit veränderte Glasstruktur zurückführen.
Im zweiten Teil dieser Arbeit wurden die gewonnenen Erkenntnisse zur Herstellung von Gläsern mit maßgeschneiderten chemischen Zusammensetzungen durch ein einfaches Glasschmelzverfahren genutzt. Dabei wurden zwei gängige Glasbildner, nämlich B2O3 und SiO2, eingesetzt, um elektrochemisch aktive Komponenten wie z.B. Co3O4 und auch GeO2 in gezielt in die Glasstruktur einzubauen. Die produzierten Gläser wurden strukturell charakterisiert und im Anschluss mit dem zuvor vorgestellten Nasszerkleinerungsprozess zu plättchenförmigen Partikeln verarbeitet. Der zuvor beobachtete spröd-duktil-Übergang konnte für alle hergestellten Gläser gezeigt und somit bestätigt werden. Dies bestätigt die Vielseitigkeit des Prozesses zur gezielten Herstellung von plättchenförmigen Partikeln, unabhängig der chemischen Zusammensetzung. Die prozessierten Gläser wurden im Anschluss elektrochemisch als neuartige Anodenmaterialien in Lithium-Ionen-Batterien charakterisiert. Dabei konnten alle Gläser eine gewisse elektrochemische Aktivität gegenüber Li-Ionen zeigen, jedoch wurde diese maßgeblich über die chemische Zusammensetzung, also dem Anteil elektrochemisch aktiver Komponenten, sowie disperser Eigenschaften, wie der Partikelgröße (und damit auch Form) oder massenspezifischen Oberfläche, beeinflusst. Die plättchenförmigen Partikeln konnten mit einer verbesserten Zyklenstabilität und erhöhten spezifischen Kapazität überzeugen. Insbesondere Gläser mit einem GeO2-Gehalt unter 25 mol.-%, sowohl für B2O3 als auch für SiO2-basierte Gläser, zeigten vielversprechende spezifische Kapazitäten sowie eine verbesserte Stabilität. Darüber hinaus wurde auf der Grundlage zuvor erarbeiteter elektrochemischer Ergebnisse eine gezielte Wärmebehandlung an einer ausgewählten Glaszusammensetzung aus dem SiO2-GeO2 Glassystem durchgeführt, um den Einfluss der Teilkristallisation, bzw. der Bildung kristalliner Domänen im Glas, auf das elektrochemische Verhalten zu untersuchen. Die Studie zeigt, dass eine geeignete Wärmebehandlung des Präkursor Glases zur Bildung von Ge-reichen GexSiyO6 Kristalliten (2 ≤ x ≤ 3; 0,1 ≤ y ≤ 1) führt, welche in die SiO2-GeO2-Glasmatrix eingebettet sind und dort als elektrochemisch aktive Stellen für die Reaktion mit Li-Ionen dienen können. Das gezeigte glaskeramische Material konnte mit einer verbesserten elektrochemischen Aktivität während der ersten Entladung, einer guten Lithiumkinetik sowie Zyklenstabilität bei verschiedenen Ladeströmen überzeugen.
Martin Thoma Impact of material parameters on the adsorption of ionomer on carbon black surfaces
Title (German): Einfluss von Materialparametern auf die Adsorption von Ionomeren auf Rußoberflächen
Language of dissertation: Deutsch
Supervisor: Prof. Dr.-Ing. Wolfgang Peukert
Available as: Library deposited pdf obtainable here https://open.fau.de/handle/openfau/37412
FAU library shelfmark/location: Online siehe Permalink
Abstract (English):
Electrode layers of polymer electrolyte membrane fuel cells (PEMFC) essentially consist of perfluorinated sulfonic acid (PFSA) ionomer and platinum-coated carbon black. The structure of the layer and, thus, also the performance of the PEMFC are already decisively influenced by the interaction of its materials in dispersion. This work is therefore focussed on the analysis of the adsorbed amount of ionomer (Γ) on carbon black as a measure of the strength of the interactions. The analysis and identification of the influencing parameters is a decisive step towards a tailor-made fuel cell. For this purpose, pristine materials were characterized and adsorption experiments dependent on material parameters were carried out.
Methods for quantitative PFSA ionomer analysis using thermogravimetric analysis and dispersion density determination were developed. After validation of the methods with each other and with data from isothermal titration calorimetry, adsorption isotherms of ionomer on carbon black were recorded. The isotherms can be described for ionomer concentrations up to approx. 2 g/l by the Langmuir-model and a monolayer concentration (Γmax) can be determined. From calculated thermodynamic parameters, it can be concluded that PFSA ionomer adsorption on carbon black is a spontaneous physisorption process.
PFSA ionomer membranes were characterized and validated with respect to their Hansen solubility/similarity parameter (HSP) by swelling experiments, since the comparison of the HSP of materials allows a prediction of the strength of interactions.
With regard to PFSA ionomers material parameter, the number of side chains was varied. Thereby, Γmax increases with increasing side chain number. However, the number of SO3H-groups on the carbon black remains constant, leading to similar colloidal dispersion stability. The properties of the carbon black, such as surface structure and total number of functional surface groups (nfg, Total), also play a decisive role for ionomer adsorption. By different carbon black modification processes (heat or acid treatment), their nfg, Total was varied and thus their HSP-value. The more similar the HSP values of carbon black and ionomer, the higher the expected Γmax of the adsorption. This hypothesis was confirmed for carbon blacks with a more disordered structure (if same type of carbon black is used) or carbon black with a lower nfg, Total. The colloidal stability of the dispersions proved to be higher for high Γ, which is made possible by low nfg, Total. Comparable trends were also found for industrial Pt-containing carbon blacks, whereby a clear influence from the supplier was also visible. Finally, the solvent also influences the ionomer adsorption. In this case, Γ decreases with decreasing HSP distance between solvent and ionomer.
Abstract (German):
Elektrodenschichten von Polymerelektrolyt-Membran-Brennstoffzellen (PEMFC, polymer electrolyte membrane fuel cell) bestehen im Wesentlichen aus perfluoriertem Sulfonsäure (PFSA)-Ionomer und mit Platin beschichtetem Ruß. Die Struktur der Schicht und damit auch die Leistungsfähigkeit der PEMFC werden schon durch die Wechselwirkungen ihrer Materialien in Dispersion maßgeblich beeinflusst. Der Fokus dieser Arbeit liegt daher auf der Analyse der adsorbierten Menge Ionomer an Ruß (Γ) als Maß für die Stärke der Wechselwirkungen. Die Analyse und Identifizierung der Einflussparameter ist ein entscheidender Schritt zur maßgeschneiderten Brennstoffzelle. Hierzu wurden Ausgangsmaterialien charakterisiert und Adsorptionsexperimente in Abhängigkeit von Materialparametern durchgeführt.
Während der Bearbeitungszeit dieser Arbeit wurden Methoden zur quantitativen PFSA-Ionomeranalyse mittels thermogravimetrischer Analyse und Dispersionsdichtebestimmung entwickelt. Nach einem Vergleich der Messergebnisse beider Methoden miteinander sowie mit Daten aus isothermer Titrationskalorimetrie wurden Adsorptionsisothermen von Ionomer an Ruß aufgenommen. Die Isothermen können für Ionomerkonzentrationen bis ca. 2 g/l durch das Langmuir-Modell beschrieben und eine Monolagenkonzentration (Γmax) ermittelt werden. Aus berechneten thermodynamischen Parametern kann geschlossen werden, dass die Adsorption von PFSA-Ionomer an Ruß ein spontaner Physisorptionsprozess ist.
PFSA-Ionomermembranen wurden in Bezug auf ihre Hansen-Löslichkeits- bzw. Ähnlichkeitsparameter (engl. Hansen solubility/similarity parameter, HSP) durch Quellungsexperimente charakterisiert und diese validiert. Durch den Vergleich der HSP von Materialien kann eine Vorhersage der Stärke von Wechselwirkungen ermöglicht werden.
Hinsichtlich PFSA-Ionomer wurde die Anzahl der Seitenketten variiert. Hierbei nahm Γmax mit steigender Seitenkettenzahl zu. Allerdings blieb so die Anzahl an SO3H-Gruppen auf dem Ruß konstant, was zu ähnlichen kolloidalen Dispersionstabilitäten führt. Auch die Eigenschaften des Rußes wie Oberflächenstruktur und die Summe der funktionellen Oberflächengruppen (nfg, Total) spielen eine entscheidende Rolle bei der Ionomeradsorption. Durch Vorbehandlungen von Rußen mittels Wärme bzw. Säure wurde nfg, Total und damit auch deren HSP variiert. Je ähnlicher die HSP-Werte von Ruß und Ionomer sind, desto höher ist die zu erwartende Γmax der Adsorption. Dies bestätigte sich für Ruße mit ungeordneterer Struktur (bei gleichem Rußtyp) oder für Ruße mit einem niedrigeren nfg, Total. Die kolloidale Stabilität der Dispersionen erwies sich als größer für hohe Γ, welche durch niedrige nfg, Total ermöglicht wurde. Vergleichbare Trends wurden auch für industrielle Pt-haltige Ruße gefunden, wobei ein deutlicher Einfluss vom Lieferanten sichtbar war. Letztendlich beeinflusst auch das Lösemittel die Adsorption. Hierbei nahm Γ mit abnehmendem HSP-Abstand zwischen Lösemittel und Ionomer ab.
Nabi Traoré – Targeted property design of bimetallic silver-gold alloy nanoparticles
Partikeltechnik zielt darauf ab, die grundlegenden Eigenschaften von Partikeln zu verstehen und adaptieren, um ihre Anwendung in verschiedenen Bereichen zu verbessern. Ein zentrales Thema in diesem Bereich ist das gezielte Design von Partikeleigenschaften durch Anpassung der Synthesebedingungen, insbesondere während der großtechnischen Herstellung. Der Zusammenhang zwischen Prozessbedingungen und Struktur der resultierenden Partikeln wird durch die Prozessfunktion beschrieben, während der Zusammenhang zwischen Partikelstruktur und (makroskopischen) Eigenschaften in der Eigenschaftsfunktion dargestellt wird. Diese Arbeit behandelt das gezielte Einstellen der Eigenschaften bimetallischer Silber-Gold Nanolegierungspartikeln. Diese weisen plasmonische Eigenschaften auf und zeigen daher Transmissionsfarben im sichtbaren Bereich des elektromagnetischen Spektrums. Die Transmissionsfarbe, welche in dieser Arbeit optimiert werden soll, ist abhängig von der Konzentration und den dispersen Eigenschaften der synthetisierten Nanopartikeln, speziell deren Größe, Form und chemische Zusammensetzung sowie deren Verteilungen. Um diese Farben gezielt einstellen zu können, ist es entscheidend, mathematische Modelle zu entwickeln, die die Syntheseparameter mit den resultierenden Partikeleigenschaften, insbesondere der Transmissionsfarbe, verknüpfen. Diese Modelle können einerseits rein auf Prozessdaten basieren, was kein detailliertes Wissen über die zugrundeliegenden Bildungsprozesse erfordert. Alternativ können mechanistische Modelle entwickelt werden, die bekannte Bildungsprozesse abbilden. Beide Ansätze werden in dieser Arbeit untersucht. Das übergeordnete Ziel ist die Entwicklung und Anwendung mathematischer Modelle für das gezielte Einstellen der Eigenschaften bimetallischer Silber-Gold Nanolegierungen. Diese Arbeit beginnt daher mit der Etablierung einer reproduzierbaren Syntheseroute für Legierungsnanopartikeln, welche eine präzise Kontrolle über die molare Zusammensetzung ermöglicht und gleichzeitig eine hohe Partikelanzahlkonzentration bei Raumtemperatur gewährleistet. Dies wird erreicht durch die Verwendung von Dextran, das sowhl als Reduktionsmittel als auch als Stabilisator im Rahmen einer One-Pot Synthese bei Raumtemperatur eingesetzt wird. Die Synthese ist reaktionskontrolliert, umweltfreundlich und erlaubt eine Skalierung zu höheren Volumina und Konzentrationen. Die synthetisierten Nanopartikeln werden anschließend von darauf spezialisierten akademischen Partnern einer umfassenden Charakterisierung unterzogen, um Partikelgröße und chemische Zusammensetzung genau zu bestimmen und ein umfassendes Verständnis sowohl des Prozesses als auch der resultierenden Partikeln zu erlangen. Anschließend werden die Partikeln für die mathematische Optimierung der Transmissionsfarben genutzt, wobei sowohl datengetriebene als auch mechanistische Modelle verwendet werden. Für das datengetriebene Modell wird ein multivariater Ansatz verwendet, um die wechselseitige Abhängigkeit der Prozessparameter während der Synthese zu untersuchen. Unter Verwendung einer etablierten Eigenschaftsfunktion wird eine Ziel-Farbe innerhalb des theoretisch erreichbaren CIEL*a*b* Farbraums definiert und der euklidische Abstand zwischen dieser Ziel-Farbe und der jeweiligen Transmissionsfarbe minimiert. Das Resultat ist eine daten-basierte Prozess-Eigenschafts-Funktion, welche Einblicke in den Mechanismus der Partikelbildung erlaubt und relevante Systemparameter und -grenzen identifiziert. Die Erkenntnisse aus dem datengetriebenen Modell dienen als Ausgangspunkt für die Entschlüsselung des komplexen mehrstufigen Bildungsmechanismus Dextran-stabilisierter Nanopartikeln. Aus zusätzlichen experimentellen Daten wird in Kooperation mit akademischen Partnern aus der Mathematik ein prädiktives, zweidimensionales Populationsbilanzmodell abgeleitet, welches die Entwicklung der Partikelgrößenverteilung, der chemischen Zusammensetzung und der optischen Eigenschaften über die Zeit quantitativ beschreibt. Das kalibrierte Modell ermöglicht die gezielte Synthese von Silber-Gold Nanolegierungspartikeln unter optimierten Synthesebedingungen. Darüber hinaus erlaubt das Modell die Extraktion von Daten wie Reaktionskonstanten und Konzentrationsprofilen der involvierten Atome, die experimentell nicht oder nur schwer zugänglich sind. Abschließend werden auf Grundlage gewonnener Erkenntnisse zur Synthese bimetallischer Nanopartikeln Strategien für die unabhängige Kontrolle der Größe und der chemischen Zusammensetzung der resultierenden Partikeln entwickelt. Durch Manipulation des zugrundeliegenden hydrochemischen Reaktionsnetzwerks wird das Übersättigungsprofil gesteuert. Das Anwenden einer einfachen Massenbilanz ermöglicht dann die unabhängige Steuerung von Größe und chemischer Zusammensetzung, wodurch Partikeln mit molaren Goldgehalten zwischen 10 % und 100 % und Größen zwischen 20 nm und 40 nm produziert werden können. Durch Anwendung solcher Strategien wird die Nutzbarkeit der erzeugten Nanopartikeln in realen Applikationen erheblich verbessert. Zusammenfassend bietet diese Arbeit ein umfassendes Verständnis des mehrstufigen Bildungsmechanismus bimetallischer Silber-Gold Nanolegierungspartikeln. Es werden mathematische Modelle entwickelt und angewendet, um die Veränderungen der Partikeln quantitativ zu beschreiben und vorherzusagen, welche die Grundlage für ein gezieltes Eigenschaftsdesign bilden. Diese Arbeit trägt nicht nur zum grundlegenden Verständnis der Partikelsynthese bei, sondern bietet auch praktische Strategien für die Entwicklung maßgeschneiderter Nanopartikeln mit steuerbaren Eigenschaften für unterschiedliche Anwendungen. Erkenntnisse und Strategien dieser Arbeit basieren auf allgemeinen Prinzipien und können auf die Herstellung anderer multielementarer Nanopartikeln angewendet werden. Author’s publications:
2025
- , , , , , , , , , :
Silver incorporation into gold patchy nanoparticles: Influence on the tunability and long-term stability of plasmonic properties
In: Journal of Physical Chemistry C (2025)
ISSN: 1932-7447
DOI: 10.1021/acs.jpcc.5c02380
2024
- , , , , , , :
Combined continuous nanoparticle synthesis with chromatographic size classification
In: Advanced Powder Technology 35 (2024), Article No.: 104294
ISSN: 0921-8831
DOI: 10.1016/j.apt.2023.104294 - , , , , , , , , , , :
Continuous Flow Synthesis and Simulation-Supported Investigation of Tunable Plasmonic Gold Patchy Nanoparticles
In: Nanoscale (2024)
ISSN: 2040-3364
DOI: 10.1039/D4NR02516D
URL: https://pubs.rsc.org/en/content/articlelanding/2024/nr/d4nr02516d - , , , , , , :
Tailoring the Reaction Pathway for Control of Size and Composition of Silver-Gold Alloy Nanoparticles
In: Journal of Physical Chemistry C (2024)
ISSN: 1932-7447
DOI: 10.1021/acs.jpcc.4c00321
URL: https://pubs.acs.org/doi/10.1021/acs.jpcc.4c00321 - , , , , , , , , , , :
Mechanistic insights into silver-gold nanoalloy formation by two-dimensional population balance modeling
In: Chemical Engineering Journal 483 (2024), Article No.: 149429
ISSN: 1385-8947
DOI: 10.1016/j.cej.2024.149429
2023
- , , , :
Green and Scalable Fractionation of Gold Nanoclusters by Anion Exchange Chromatography: Proof of Principle and Scale-Up
In: ACS Applied Nano Materials 6 (2023), p. 6953-6962
ISSN: 2574-0970
DOI: 10.1021/acsanm.3c00826 - , , , , :
Targeted color design of silver-gold alloy nanoparticles
In: Nanoscale Advances (2023)
ISSN: 2516-0230
DOI: 10.1039/d3na00856h - , , , , , , , , , :
Green room temperature synthesis of silver-gold alloy nanoparticles
In: Nanoscale Advances (2023)
ISSN: 2516-0230
DOI: 10.1039/d2na00793b - , , , , , , , , , , :
Population balance modeling of InP quantum dots: Experimentally enabled global optimization to identify unknown material parameters
In: Chemical Engineering Science 281 (2023), Article No.: 119062
ISSN: 0009-2509
DOI: 10.1016/j.ces.2023.119062
2022
- , , , , , , , , , :
Multidimensional characterization of noble metal alloy nanoparticles by multiwavelength analytical ultracentrifugation
In: Nanoscale (2022)
ISSN: 2040-3364
DOI: 10.1039/d2nr02633c
Johannes Menath (Née Harrer) – Self-Assembly of Colloidal Surface Structures
First, we study the thermoresponsive behavior of interface-bound PNIPAM microgels. While submerged microgel crystals melt upon heating, this process is suppressed for those adsorbed at a liquid interface. However, a hysteretic behavior emerges, where initially collapsed particles, deposited to a hot interface, exhibit a contracted core, which relaxes upon cooling and cannot re-collapse after subsequent heating cycles. We find that this hysteresis is stronger for lower crosslinked microgels and that it even persists for linear PNIPAM chains, indicating that it is a fundamental property of responsive matter under external confinement.
Next, we investigate the isothermal corona collapse of microgels upon external compression. Microgels deform at the liquid interface into a swollen core surrounded by a thin corona of dangling polymer chains. We find that binary microgel mixtures show a defined series of transitions upon increasing packing density, where smaller corona-pairs collapse first, followed by larger ones. This can be used to engineer patterns, such as flower-like structures.
Monodisperse particles typically assemble into hexagonal lattices. In 1998 Jagla theoretically predicted the formation of non-hexagonal phases from hard core-soft shell particles. Since then, many patterns were predicted in theory and simulation, however, the experimental realization is still in its infancy. We create a one-component core-shell system capable of forming chains and rhombic packing upon self-assembly and we study the influence of core size and crosslinker content on the structure formation. By applying controlled radical polymerization of the iniferter type, we gain additional control over the shell morphology, which translates into defined phases such as dimer, trimer and tetramer clusters as well as zig-zag and braided chains. This approach provides an easily modifiable particle system for heterostructural self-assembly.
Last, we study the prerequisites for high order in hexagonal colloidal crystals. Through the acoustic vibrations of a loudspeaker, we are able to increase the domain sizes of colloidal monolayers by almost two orders of magnitude. We optimize the parameters frequency, amplitude and surface coverage and apply the concept of acoustic annealing to different hard and soft particles.
Abstract (German): In dieser Dissertation beschäftigen wir uns mit dem Selbstanordnungsverhalten kolloidaler Partikel in zwei Dimensionen. Wir verwenden Luft/Wasser-Grenzflächen, um die Partikel in einer fluiden Ebene zu fixieren. Die internen und externen Kräfte verursachen eine spontane Ausrichtung in geordnete Gitter, welche sich auf feste Substrate übertragen lassen, um mikroskopische Analysen und lithographische Weiterverarbeitung zu ermöglichen. Wir erforschen den Parameterraum kolloidaler Selbstanordnung und erstellen Oberflächenmuster mit unterschiedlichen Strukturgrößen, Symmetrien, Materialien sowie Nah- und Fernordnungen. Dadurch können wir zur Beantwortung der fundamentalen Fragen beitragen: Wie kann kristalline Perfektion erreicht werden? Wie können sphärische Partikel die Schranken hexagonaler Symmetrie überwinden? Wie verhält sich dynamisch reaktive Materie unter dem Einfluss von Grenzflächen?
Zuerst untersuchen wir das thermoresponsive Verhalten von adsorbierten PNIPAM-Mikrogelen. Diese vernetzten Polymerpartikel schwellen in wässriger Dispersion und kollabieren, wenn die Temperatur des Mediums über 32 °C steigt. Während dreidimensionale Mikrogelkristalle durch den thermisch induzierten Kollaps schmelzen, ist dieser Prozess bei grenzflächengebundenen Anordnungen unterdrückt. Jedoch zeigt sich dort eine Hysterese. An heiße Luft/Wasser-Grenzflächen adsorbierte Mikrogele weisen einen kollabierten Kern auf, der sich beim Abkühlen ausdehnt und dann nicht mehr in den ursprünglichen Zustand zurückkehren kann. Wir sehen, dass die Hysterese bei geringerer Vernetzerdichte zunimmt und sogar bei linearen PNIPAM-Ketten auftritt, was darauf hindeutet, dass sie eine fundamentale Eigenschaft responsiver Polymere ist.
Außerdem erforschen wir den isothermen Corona-Kollaps von grenzflächengebundenen PNIPAM-Mikrogelen. Diese deformieren unter dem Einfluss der Grenzflächenspannung zu einem geschwollenen Kern, der von einer flachen Corona aus Polymerketten umgeben ist. Die Coronae zwischen den Kernen kollabieren, wenn die Monolage durch externen Druck komprimiert wird. Wir beobachten, dass binäre Mikrogelmischungen eine definierte Übergangssequenz aufweisen, wobei kleinere Corona-Paare früher kollabieren als größere. Dies kann für die Erzeugung von Mustern wie z. B. blumenartigen Strukturen genutzt werden.
Monodisperse Partikel ordnen sich typischerweise zu hexagonalen Gittern an. Im Jahr 1998 entdeckte Jagla die Möglichkeit der Bildung nichthexagonaler Strukturen aus Partikeln mit hartem Kern und weicher Schale. Während seitdem zahlreiche Muster in Modellen und Simulationen vorhergesagt wurden, ist die experimentelle Umsetzung immer noch in ihren Anfängen. Hier synthetisieren wir ein kovalent gebundenes Kern-Schale Partikel, das sich zu Ketten und rhombischen Packungen anordnet und wir untersuchen den Einfluss der Kerngröße und der Vernetzerdichte auf die Strukturbildung. Durch die Anwendung kontrolliert radikalischer Polymerisation vom Iniferter-Typ erreichen wir eine zusätzliche Kontrolle über die Schalenarchitektur, was sich in definierten Phasen widerspiegelt wie Dimeren, Trimeren und Tetrameren sowie zickzackförmigen und alternierenden Ketten. Diese Synthesemethode liefert ein leicht modifizierbares Partikelsystem für die heterostrukturelle Selbstanordnung.
Zuletzt untersuchen wir die Voraussetzungen für hohe Ordnung in kolloidalen Monolagen. Durch die akustischen Vibrationen eines Lautsprechers können wir die Korngröße um fast zwei Größenordnungen steigern. Wir optimieren die Parameter Frequenz, Amplitude und Packungsdichte und wenden das Konzept des akustischen Ausheilens auf verschiedene harte und weiche Partikel an. Author’s publications:
2024
- , , , , , , :
Au Nanoparticles@Si Nanowire Oligomer Arrays for SERS: Dimers Are Best
In: ACS Applied Materials and Interfaces 16 (2024), p. 41379 - 41389
ISSN: 1944-8244
DOI: 10.1021/acsami.4c10004 - , , , , , , , :
Highly Ordered Monolayers of μm-Sized Polystyrene Spheres Studied by Grazing-Incidence Small-Angle X-ray Scattering, Simulations, and Geometrical Calculations
In: Langmuir 40 (2024), p. 1185-1194
ISSN: 0743-7463
DOI: 10.1021/acs.langmuir.3c02219
2023
- , , , , , , , , :
Acoustic Crystallization of 2D Colloidal Crystals
In: Advanced Materials 35 (2023), Article No.: 2206593
ISSN: 0935-9648
DOI: 10.1002/adma.202206593
2022
- , , , , , :
Interfacial self-assembly of SiO2-PNIPAM core-shell particles with varied crosslinking density
In: Soft Matter (2022)
ISSN: 1744-683X
DOI: 10.1039/d2sm00644h - , , , , , , , , :
Acoustic Crystallization of Two-dimensional Colloidal Crystals
In: Advanced Materials (2022)
ISSN: 0935-9648
DOI: 10.1002/adma.202206593 - , , , , , , , , , , , , , , :
Versatile strategy for homogeneous drying patterns of dispersed particles
In: Nature Communications 13 (2022)
ISSN: 2041-1723
DOI: 10.1038/s41467-022-30497-z
2021
- , , , , , , , :
Soft Particles at Liquid Interfaces: From Molecular Particle Architecture to Collective Phase Behavior.
In: Langmuir 37 (2021), p. 5364-5375
ISSN: 0743-7463
DOI: 10.1021/acs.langmuir.1c00541 - , , , , , , , , , , , , , :
A Self‐Ordered Nanostructured Transparent Electrode of High Structural Quality and Corresponding Functional Performance
In: Small NA (2021), Article No.: 202100487
ISSN: 1613-6829
DOI: 10.1002/smll.202100487
URL: https://onlinelibrary.wiley.com/doi/10.1002/smll.202100487 - , , , , , :
Collapse-induced phase transitions in binary interfacial microgel monolayers
In: Soft Matter 17 (2021), p. 4504-4516
ISSN: 1744-683X
DOI: 10.1039/d1sm00318f - , , , , , , , :
Interface-induced hysteretic volume phase transition of microgels: simulation and experiment
In: Soft Matter (2021)
ISSN: 1744-683X
DOI: 10.1039/d1sm00111f - , , , , , :
Defined core–shell particles as the key to complex interfacial self-assembly
In: Proceedings of the National Academy of Sciences of the United States of America 118 (2021), Article No.: e2113394118
ISSN: 0027-8424
DOI: 10.1073/pnas.2113394118
2019
- , , , , , :
Stimuli-Responsive Behavior of PNiPAm Microgels under Interfacial Confinement
In: Langmuir (2019)
ISSN: 0743-7463
DOI: 10.1021/acs.langmuir.9b01208
Andreas Völkl – Advancing Silver-on-Silica Patchy Particle Synthesis: Continuous Flow Seeded Growth Enabling Product Design and In-Line Spectroscopy
Die vorliegende Arbeit präsentiert eine umfassende Untersuchung zur Entwicklung und Anwendung von kontinuierlichen Prozessen für die Synthese von plasmonischen Ag-SiO2 „Patchy Partikeln“ mit einstellbaren optischen Eigenschaften. Zunächst wurde ein kontinuierlicher Prozess entwickelt, der heterogene Keimbildung und Wachstum kombiniert, jedoch aufgrund fehlender Kontrolle über die einzelnen Phasen umgestaltet wurde. Der neu entwickelte Prozess basiert auf keimbasiertem Wachstum („Seeded Growth“). Dieser innovative Prozess umfasst die Synthese von Gold-bekeimten Kernpartikeln durch einen kontinuierlichen Prozess, der das nachfolgende gezielte Wachstum von Silber-Patches ermöglicht. Die resultierenden Patches können gezielt in ihrer Größe und damit ihren optischen Eigenschaften eingestellt werden, wobei die Peak-Wellenlängen der Dipol-Oberflächenplasmonenresonanz (LSPR) entlang der Ebene („in-plane“) linear mit einem neuen Design-Parameter korrelierten. Der Seeded-Growth-Prozess ermöglichte die Untersuchung des Patchwachstums unabhängig von der Nukleation und nutzte einen neu entwickelten kontinuierlichen Flussreaktor mit in-line UV-Vis-NIR-Spektroskopie. Entgegen vorherigen Annahmen entwickeln sich Dipol-LSPR-Peaks nahe der endgültigen Peak-Wellenlänge, ohne während dem Wachstum signifikant zu verschieben. Dies deutet auf ein Wachstum hin, bei dem das Aspektverhältnis nahezu unverändert bleibt und welches bereits durch die Synthesebedingungen vorbestimmt ist. Mathematische Modelle basierend auf autokatalytischem Wachstum konnten mit hoher Übereinstimmung an kinetische Daten gefittet werden und zeigten quasi-reaktionsbedingungsunabhängige Eigenschaften des Wachstumsprozesses von Patches unterschiedlicher Größe. Nur die Ammoniakkonzentration zeigte einen starken Einfluss auf die Wachstumskinetik. Die Anwendbarkeit des neuen Prozesses für großskalige Synthesen wurde bestätigt, obwohl durch Ammoniakalterung allmähliche Veränderungen der optischen Eigenschaften während der Synthese verursacht werden. Dieser Alterungseffekt kann durch gezielte Säurezugabe minimiert, aber nicht komplett verhindert werden. Aus solch großskaligen Synthesen gesammelte Partikel wurden als Pigmente in harzbasierten Farben verwendet, was das Potenzial für pigmentbasierte Anwendungen aufzeigt. Stabilitätsstudien zeigten die Anfälligkeit der Patches für chemische Degradation, wodurch die Untersuchung von effizienteren Downstream-Prozessen angestoßen wurde. Tangentialflussfiltration erwies sich aufgrund der hohen Durchsatzrate und ausgezeichneten Produktrückgewinnung ohne Veränderung der optischen Eigenschaften als vielversprechende Methode zur schnellen Konzentration von Patchy-Partikeldispersionen. Author’s publications:
2024
- , , , , :
Incorporating silica nanoparticles with silver patches into alginate-based bioinks for 3D bioprinting
In: MRS Communications (2024)
ISSN: 2159-6859
DOI: 10.1557/s43579-024-00668-8
URL: https://link.springer.com/article/10.1557/s43579-024-00668-8
2023
- , , , , , , , , :
Efficient quenching sheds light on early stages of gold nanoparticle formation
In: RSC Advances 13 (2023), p. 18001-18013
ISSN: 2046-2069
DOI: 10.1039/d3ra02195e - , , , , , :
Gram-Scale Continuous Flow Synthesis of Silver-on-Silica Patchy Nanoparticles with Widely Tunable Resonances for Plasmonics Applications
In: ACS Applied Nano Materials 6 (2023), p. 10126-10137
ISSN: 2574-0970
DOI: 10.1021/acsanm.3c00869
2022
- , , , , , , , , , , :
Determination of the yield, mass and structure of silver patches on colloidal silica using multiwavelength analytical ultracentrifugation
In: Journal of Colloid and Interface Science 607 (2022), p. 698-710
ISSN: 0021-9797
DOI: 10.1016/j.jcis.2021.08.161
URL: https://www.researchgate.net/publication/354270035_Determination_of_the_yield_mass_and_structure_of_silver_patches_on_colloidal_silica_using_multiwavelength_analytical_ultracentrifugation - , :
Investigation and mitigation of reagent ageing during the continuous flow synthesis of patchy particles
In: Chemical Engineering Research & Design 181 (2022), p. 133-143
ISSN: 0263-8762
DOI: 10.1016/j.cherd.2022.03.016
URL: https://www.researchgate.net/publication/359115244_Investigation_and_mitigation_of_reagent_ageing_during_the_continuous_flow_synthesis_of_patchy_particles
Frederik Mayer – Charakterisierung des Einflusses von Faserorientierung und Faserform auf Benetzung und Tropfenbeweglichkeit
Die Untersuchung der Benetzung und Mobilität von Flüssigkeitstropfen auf Fasern ist für viele industrielle Anwendungen und insbesondere für die Koaleszenzfiltration von Bedeutung. Die Beweglichkeit von Flüssigkeitstropfen beeinflusst die Sättigung in einem Koaleszenzfilter und bestimmt den Druckabfall. Es ist wichtig, einen selbstreinigenden Filter zu entwickeln, bei dem die Flüssigkeitstropfen vom Filter aufgefangen werden und aus dem Filter abfließen. Dieses Buch bietet eine Zusammenfassung der Forschungsarbeiten zur Charakterisierung des Einflusses von Fasergeometrie und deren Orientierung im Strömungsfeld auf die Benetzbarkeit und Mobilität von Tröpfchen anhand von Experimenten und Modellierungen. Die Erkenntnisse bieten einen ersten Anhaltspunkt, um die zukünftigen Entwicklungen effizienterer Filtrationssysteme zu unterstützen. Abstract (English: Machine translation):
The study of wetting and mobility of liquid droplets on fibers is important for many industrial applications and especially for coalescence filtration. The mobility of liquid droplets affects the saturation in a coalescence filter and determines the pressure drop. It is important to develop a self-cleaning filter in which the liquid droplets are captured by the filter and drain out of the filter. This book provides a summary of the research work to characterize the influence of fiber geometry and its orientation in the flow field on the wettability and mobility of droplets using experiments and modeling. The findings offer a starting point to support future developments of more efficient filtration systems. Author’s publications:
No publications found.
Laura Unger – Production, Characterisation and Shape Transformation of High-Performance Thermoplastics for Additive Manufacturing
The focus of this thesis was the expansion of the material variety for the additive manufacturing process of laser-based powder bed fusion. The requirements for potential powder materials with regard to their intrinsic and extrinsic properties are very strict, in order to ensure preferential processability in the manufacturing process. The largest market share of commercially available powders is currently dominated by polyamides. A mature process for the targeted production of suitable powder materials has already been established, in particular for polyamide 12, namely the liquid-liquid phase separation and precipitation approach. By using this process of liquid-liquid phase separation with subsequent precipitation, the production of high-temperature resistant polyetherimide particles is focused. Polyetherimide belongs to the category of high-performance thermoplastics and has extreme resistance to chemical substances and radiation as well as good electrical insulation. The high mechanical strength and stability in combination with the continuous operating temperature of 170 °C allow a preferable use in challenging areas such as the aerospace industry and the electronics sector. The processability in laser-based powder bed fusion has been challenging so far, since the amorphous structure of the polymer leads to lower component densities in the finished product. In the framework of the present thesis, a semi-crystalline, micron-scaled polymer powder was produced from a granulated polyetherimide via the process of liquid-liquid phase separation and precipitation starting from an amorphous structure. The polymer is selectively heated in a suitable solvent until it is completely dissolved, allowing polymer-rich droplets to be formed in the solution during the subsequent cooling phase, which finally precipitate as polymer-rich particles. By varying the process parameters, both the intrinsic and extrinsic particle properties could be precisely influenced. The resulting micron-scaled particles had a preferred size distribution with a potato-shaped to spherical form, inducing a good flowability behaviour of the powder materials. In addition, it was possible to control the formed semi-crystalline phase through the solvent selection and to significantly influence the intensity via the thermal history in the process. The second object of interest was the high-performance thermoplastic polyetherketoneketone which was modified using the thermal rounding process. Powder materials made of high-temperature resistant polymers are typically transferred from the granulated to the powder state via (cryogenic) grinding due to their high mechanical load-bearing capacity. The resulting particle shapes are irregular and branched, making post-processing desirable for optimising processability. Thermal rounding is a method of changing the shape of polymer particles, taking advantage of the impulse to reduce the surface tension in the molten state. Complete spheronisation could be achieved for particle sizes in the range up to 50 µm, as the process time was too short for larger particles. In addition, the slow crystallisation rate of polyetherketoneketone made it difficult to preserve the shape change during the cooling phase. Thermal rounding of polymer particles offers the possibility of modifying the particle shape from spheronisation to the intended generation of aggregates from particles. Thermal rounding marks an alternative approach for the modification of particles besides the mechanical rounding and precipitation approach. The latter are limited to either a certain material ductility or chemical compatibility with suitable solvents. For the thermal rounding approach the material used only has to provide fusibility. The intrinsic properties of the feed material remain constant. The thermal rounding approach is predominantly interesting for the application with integrated filler materials (e.g., fibers, nanoparticles). Abstract (German):
Der Fokus der vorliegenden Dissertation liegt auf der Erweiterung der Materialvielfalt für das additive Fertigungsverfahren des laserbasierten Pulverbettschmelzens. Die Anforderungen an potenzielle Pulvermaterialien im Hinblick auf deren intrinsische und extrinsische Eigenschaften sind sehr streng, um eine bevorzugte Verarbeitbarkeit im Fertigungsprozess sicherstellen zu können. Der größte Marktanteil der kommerziell erhältlichen Pulver wird derzeit von Polyamiden dominiert, da insbesondere für Polyamid 12 bereits ein ausgereifter Prozess für die gezielte Herstellung geeigneter Pulvermaterialien etabliert ist. Unter Anwendung dieses Prozesses, der flüssig-flüssig Phasentrennung mit anschließender Fällung, wird die Herstellung von Partikeln aus hochtemperaturbeständigem Polyetherimid angestrebt. Hierbei wird das Polymer gezielt in einem geeigneten Lösemittel bis zum vollständigen Lösen erhitzt, sodass während der darauffolgenden Abkühlphase polymerreiche Tropfen in der Lösung gebildet werden können, welche schließlich als polymerreiche Partikel ausfallen. Polyetherimid gehört der Kategorie der Hochleistungsthermoplaste an und weist eine extreme Beständigkeit gegenüber chemischen Substanzen und Strahlung sowie eine gute elektrische Isolierung auf. Des Weiteren ermöglichen die hohe mechanische Festigkeit und Steifigkeit in Kombination mit der Dauernutzungstemperatur von 170 °C eine bevorzugte Verwendung in anspruchsvollen Bereichen, wie der in der Luft- und Raumfahrt- sowie in der Elektronikindustrie. Die Verarbeitbarkeit im laserbasierten Pulverbettschmelzen ist bisher herausfordernd, da die amorphe Struktur des Polymers im fertigen Produkt zu geringeren Bauteildichten führt. Im Rahmen dieser Thesis wurde aus einem granulierten Polyetherimid über den Prozess der flüssig-flüssig Phasentrennung und Fällung (ausgehend von einer amorphen Struktur) ein teilkristallines, mikroskaliges Polymerpulver hergestellt. Unter Variation der Prozessparameter konnten sowohl die intrinsischen als auch die extrinsischen Partikeleigenschaften gezielt beeinflusst werden. Die resultierenden mikroskaligen Partikel wiesen eine bevorzugte Größenverteilung bei einer kartoffelförmigen bis sphärischen Form auf, woraus eine gute Fließfähigkeit der Pulvermaterialien folgte. Zudem war es möglich die aus gebildete teilkristalline Phase über die Wahl der verwendeten Lösemittel zu steuern und die Intensität maßgeblich über die thermische Historie im Prozess zu beeinflussen. Der Hochleistungsthermoplast Polyetherketonketon wurde in der vorliegenden Thesis über das Verfahren der thermischen Verrundung formgebend bearbeitet. Pulvermaterialien aus hochtemperaturbeständigen Polymeren werden aufgrund ihrer hohen mechanische Belastbarkeit typischerweise über (kryogene) Vermahlung vom granulierten in den pulverförmigen Zustand transferiert. Die hieraus resultierenden Partikelformen sind irregulär und verzweigt, weshalb eine Nachbearbeitung für die Optimierung der Verarbeitbarkeit erstrebenswert ist. Die thermische Verrundung ist eine Methode um Polymerpartikel in ihrer Form zu verändern. Hierbei wird der Drang zur Reduktion der Oberflächenspannung im schmelzflüssigen Zustand ausgenutzt. Eine vollständige Sphäronisierung konnte maßgeblich für Partikelgrößen im Bereich bis 50 µm erzielt werden, da die Prozesszeit für größere Partikel zu gering war. Zudem erschwerte die langsame Kristallisationsrate von Polyetherketonketon die Konservierung der Formänderung während der Abkühlphase. Die thermische Verrundung von Polymerpartikeln bietet die Möglichkeit zur Modifikation der Partikelform von der Sphäronisierung bis hin zur beabsichtigten Generierung von Aggregaten aus Partikeln. Die thermische Verrundung stellt neben der mechanischen Abrundung und der Fällung einen alternativen Ansatz für die Modifizierung von Partikeln dar. Letztere sind entweder auf eine bestimmte Materialduktilität oder chemische Kompatibilität mit geeigneten Lösungsmitteln beschränkt. Bei der thermischen Verrundung benötigt das verwendete Material ausschließlich eine gewisse Schmelzbarkeit. Die intrinsischen Eigenschaften des Ausgangsmaterials bleiben konstant. Der thermische Verrundungsansatz ist vor allem für die Anwendung mit integrierten Füllstoffen (z. B. Fasern, Nanopartikel) interessant. Author’s publications:
2023
- , , , , , :
Control of Particle Properties in Thermally-Induced Precipitation of Polyetherimide
In: Polymers 15 (2023), Article No.: 1944
ISSN: 2073-4360
DOI: 10.3390/polym15081944 - , , , , , :
Thermal rounding for shape modification of high-performance polyetherketoneketone and reinforced polyetherketoneketone-carbon fiber composite particles
In: Journal of Polymer Research 30 (2023), Article No.: 213
ISSN: 1022-9760
DOI: 10.1007/s10965-023-03600-1
2022
- , , , , :
Parameter study for the production of semi-crystalline polyetherimide particles via liquid-liquid phase separation and precipitation
12th CIRP Conference on Photonic Technologies, LANE 2022 (Erlangen, 4. September 2022 - 8. September 2022)
In: M. Schmidt, F. Vollertsen, B.M. Colosimo (ed.): Procedia CIRP 2022
DOI: 10.1016/j.procir.2022.08.059 - , , , , :
Semi‐Crystalline Polyetherimide Microparticles via Liquid‐Liquid Phase Separation and Precipitation
In: Macromolecular Materials and Engineering (2022), p. 2100797
ISSN: 1438-7492
DOI: 10.1002/mame.202100797 - , , , :
Particle Residence Time Distribution in a Concurrent Multiphase Flow Reactor: Experiments and Euler-Lagrange Simulations
In: Processes 10 (2022)
ISSN: 2227-9717
DOI: 10.3390/pr10050996
2021
- , , , , :
Particle Lagrangian CFD Simulation and Experimental Characterization of the Rounding of Polymer Particles in a Downer Reactor with Direct Heating
In: Processes 9 (2021), Article No.: 916
ISSN: 2227-9717
DOI: 10.3390/pr9060916
Uwe Frank – Multidimensional Nanoparticle Ensemble Characterisation – Theory and Application
This thesis investigates fundamental aspects of multidimensional (nD) aspects in the characterization of nanoparticle ensembles. Firstly, nD particle size / property distributions (PSDs) are introduced as a tool for the meaningful description of nanoparticle ensembles. The conversion of PSDs into different weightings is illustrated to account for the effect of different measurement techniques and to ensure comparability of measurements. Additionally, the calculation of cumulative distributions in the nD case is briefly stated. The outlined techniques are applied to the – currently – most relevant case of two-dimensional (2D) PSDs using the example of gold nanorods. Consecutively, this example is used for the illustration of the effects originating from bin sizes, grids, normalization, and probabilities. Isolines and the extraction of lesser dimensional information are introduced as well. In practice, measurement devices are only able to record a limited number of particles, while ensemble distributions and the introduced techniques, on the other hand, are defined for an infinite number of particles (which is equivalent to smooth distributions), inducing the necessity to investigate the error introduced by this effect, which is illustrated in the subsequent chapter. Here, it is briefly discussed how the error quantities can be accessed and the required number of particles determined to approximate the underlying PSD with sufficient accuracy. In the third chapter, the generalization of an existing measurement technique, the optical back coupling (OBC) is described in detail. The original OBC technique was used for the determination of 2D PSDs of gold nanorods via coupling of hydrodynamic and optical properties within measurement data resulting from analytical ultra-centrifugation (AUC) experiments. Especially, a technique to obtain the required hydrodynamic properties based on bead models is introduced, the contour driven bead modeling (CDBM). The extended OBC is applied to an example particle system, gold bipyramids, to determine the feasibility and error sources. Lastly, separations of multidimensional PSDs are discussed. Here, the well-known basics of one separation step acting on a one-dimensional PSD are extended to the case of one separation step acting on a 2D PSD, which is extended to a two-fold separation acting on a 2D PSD. The gained insight is used to outline the general concept of an m-fold separation of an nD PSD. The techniques are applied to chosen 2D PSD examples for illustration purposes, as well as to the AUC measurements of a gold nanorod ensemble which was separated via chromatography. Abstract (German):
In der vorliegenden Dissertation werden grundlegende Aspekte der Charakterisierung mehrdimensionaler (nD) Nanopartikelensembles untersucht. Anfangs werden nD Partikelgrößen- bzw. Partikeleigenschaftsverteilungen (PGVs) als Werkzeug für eine aussagekräftige Beschreibung von Nanopartikelensembles eingeführt. Die Umrechnung von Verteilungen in andere Gewichtungen wird dargelegt, um die Vergleichbarkeit von verschiedenen Messtechniken zu gewährleisten. Zusätzlich wird die Berechnung kumulativer Verteilungen im mehrdimensionalen Fall erklärt. Die aufgezeigten Techniken finden Anwendung im – derzeit – relevantesten Fall der zweidimensionalen (2D) PGVs anhand des Beispiels von Goldnanostäbchen. Dieses dient der Veranschaulichung der Effekte von Akkuratesse (bin size), zugrundeliegenden Gittergrößen (grid size), Normalisierung und der Berechnung von Wahrscheinlichkeiten. Des Weiteren werden Isolinien und die Extraktion von Information niedrigerer Dimension dargelegt. In praktischen Anwendungen können Messgeräte nur eine endliche Anzahl von Partikeln vermessen, jedoch sind Ensemble Verteilungen und die eingeführten Techniken für eine unendliche Partikelanzahl definiert (dies ist äquivalent zu glatten Verteilungen). Im nachfolgenden Kapitel wird die notwendige Untersuchung des durch diesen Effekt eingeführten Fehlers dargelegt. Hier wird diskutiert, wie dieser analysiert und die Anzahl notwendiger Partikel abgeschätzt werden kann, um die zugrunde liegende PGV mit ausreichender Genauigkeit zu approximieren. Im dritten Kapitel wird die Generalisierung einer bestehenden Messtechnik, dem optical back coupling (OBC) im Detail beschrieben. Die ursprüngliche OBC Technik wurde zur Vermessung von 2D PGV von Goldnanostäbchen verwendet, wobei optische und hydrodynamische Eigenschaften verknüpft wurden, welche bei Messungen mittels einer analytischen Ultrazentrifuge (AUZ) erfasst wurden. Insbesondere wird ein auf bead-Modellen basierender Ansatz, das contour driven bead modelling (CDBM), eingeführt, welcher die Berechnung hydrodynamischer Eigenschaften ermöglicht. Die erweiterte OBC Technik wird auf ein exemplarisches Partikelsystem, bestehend aus Goldbipyramiden, angewendet um die technische Machbarkeit und Fehlerquellen zu analysieren. Abschließend werden mehrdimensionale Trennungen von nD Partikelgrößenverteilungen diskutiert. Als Ausgangspunkt dient die etablierte Beschreibung einer einfachen Trennung einer eindimensionalen PGV. Diese wird erweitert zur Beschreibung einer einfachen Trennung einer 2D PGV, welche selbst erweitert wird auf eine zweifache Trennung einer 2D PGV. Die gewonnenen Erkenntnisse dienen der Formulierung des allgemeinen Konzepts von mehrfachen Trennungen von nD PGVs. Der erhaltene Formalismus wird für ausgewählte Beispiele von 2D PGVs angewendet, sowie auf exemplarische Messungen von 2D PGVs mittels OBC und AUZ, welche durch Chromatografie getrennt wurden. Author’s publications:
2024
- , , , , , , :
Development of an advanced multiwavelength emission detector for the analytical ultracentrifuge
In: Nanoscale Advances (2024)
ISSN: 2516-0230
DOI: 10.1039/d3na00980g
2023
- , , , , , , , :
Multidimensional Fractionation of Particles
In: Separations 10 (2023), Article No.: 252
ISSN: 2297-8739
DOI: 10.3390/separations10040252 - , , , , , , , , , , :
Determination of 2D Particle Size Distributions in Plasmonic Nanoparticle Colloids via Analytical Ultracentrifugation: Application to Gold Bipyramids.
In: ACS nano (2023)
ISSN: 1936-0851
DOI: 10.1021/acsnano.2c12257
2021
- , , , , :
Progress in Multidimensional Particle Characterization
In: KONA Powder and Particle Journal (2021)
ISSN: 2187-5537
DOI: 10.14356/kona.2022005
2020
- , , , , , :
Estimation of bivariate probability distributions of nanoparticle characteristics, based on univariate measurements
In: Inverse Problems in Science and Engineering (2020)
ISSN: 1741-5977
DOI: 10.1080/17415977.2020.1849181
2019
- , , , :
Multidimensional Particle Size Distributions and Their Application to Nonspherical Particle Systems in Two Dimensions
In: Particle & Particle Systems Characterization (2019), Article No.: 1800554
ISSN: 0934-0866
DOI: 10.1002/ppsc.201800554
Sayali Zarekar – Investigation of drying and inactivation of bakers yeast in fluidized beds operated at reduced pressures
Lukas Wergen – Synthesis of Semiconducting Nanoparticles from Silicon and Germanium in a Nucleation Controlled Gas Phase Process
2019
- , , , , , , , :
Magneli-Phases in Anatase Strongly Promote Cocatalyst-Free Photocatalytic Hydrogen Evolution
In: ACS Catalysis 9 (2019), p. 3627-3632
ISSN: 2155-5435
DOI: 10.1021/acscatal.9b00578 - , , , , , :
Aerosol synthesis of germanium nanoparticles supported by external seeding: Theoretical and experimental analysis
In: Journal of Aerosol Science 128 (2019), p. 50-61
ISSN: 0021-8502
DOI: 10.1016/j.jaerosci.2018.11.013
Teresa Walter – Self-cleaning, repellent surface coatings for environmental and consumer protection
2024
- , , , , , , , , :
Performance of environmentally friendly, liquid-infused coatings against biofouling: evaluation of macrofouling and microbially induced corrosion in freshwater environments
In: Journal of Materials Chemistry A (2024)
ISSN: 2050-7488
DOI: 10.1039/d4ta00741g
URL: https://pubs.rsc.org/en/content/articlelanding/2024/ta/d4ta00741g
2023
- , , , , , , , , , , , , :
From Meso to Macro: Controlling Hierarchical Porosity in Supraparticle Powders
In: Small (2023)
ISSN: 1613-6829
DOI: 10.1002/smll.202300241
2022
- , , , , , , :
From Sticky to Slippery: Self-Functionalizing Lubricants for in Situ Fabrication of Liquid-Infused Surfaces
In: ACS Applied Materials and Interfaces (2022)
ISSN: 1944-8244
DOI: 10.1021/acsami.2c02390 - , , , , , , :
Sustainable Repellent Coatings Based on Renewable Drying and Nondrying Oils
In: Advanced Materials Interfaces (2022)
ISSN: 2196-7350
DOI: 10.1002/admi.202202032 - , , , , , :
Dispersion-based, scalable fabrication of repellent superhydrophobic and liquid-infused coatings under ambient conditions
In: Green Chemistry (2022)
ISSN: 1463-9262
DOI: 10.1039/d2gc00579d
2020
- , , , , :
Cell Interactions with Size-Controlled Colloidal Monolayers: Toward Improved Coatings in Bone Tissue Engineering
In: Langmuir 36 (2020), p. 1793-1803
ISSN: 0743-7463
DOI: 10.1021/acs.langmuir.9b03308
Eva-Maria Hoffmann – Untersuchungen zur Strukturbildung von Elektrodenschichten für Polymer-Elektrolyt-Membran-Brennstoffzellen
2020
- , , , , , , :
Impact of DAA/water composition on PFSA ionomer conformation.
In: Journal of Colloid and Interface Science 582 (2020), p. 883-893
ISSN: 0021-9797
DOI: 10.1016/j.jcis.2020.08.058
2019
- , , , , :
Formulation of carbon black-ionomer dispersions for thin film formation in fuel cells
In: Particuology (2019)
ISSN: 1674-2001
DOI: 10.1016/j.partic.2018.08.001
2018
- , , , , , , :
Simple and Reliable Method for Studying the Adsorption Behavior of Aquivion lonomers on Carbon Black Surfaces
In: Langmuir 34 (2018), p. 12324-12334
ISSN: 0743-7463
DOI: 10.1021/acs.langmuir.8b02726
Björn Düsenberg – Modification and structuring of polymer powders by gas phase processes
2024
- , , , , , , , , , :
Magnetic polyamide 11 powder for the powder bed fusion process by liquid-liquid phase separation and crystallization
In: Additive Manufacturing 88 (2024), Article No.: 104250
ISSN: 2214-7810
DOI: 10.1016/j.addma.2024.104250 - , , , , , :
Poly(butylene terephthalate) for Laser Powder Bed Fusion of Polymers: Feedstock Precipitation and Powder Characterization
In: ACS Applied Polymer Materials (2024)
ISSN: 2637-6105
DOI: 10.1021/acsapm.4c01573
2023
- , , , :
Flowability of plant based food powders: Almond, chestnut, chickpea, coconut, hazelnut and rice
In: Journal of Food Engineering 357 (2023), Article No.: 111606
ISSN: 0260-8774
DOI: 10.1016/j.jfoodeng.2023.111606 - , , , :
Spray agglomeration of polymer particles: Influence of spray parameters on shape factors
In: Powder Technology 422 (2023), Article No.: 118491
ISSN: 0032-5910
DOI: 10.1016/j.powtec.2023.118491 - , , , , , , :
Enabling triboelectric charging as a powder charging method for electrophotographic powder application in laser-based powder bed fusion of polymers by triboelectric charge control
In: Additive Manufacturing (2023), p. 103531
ISSN: 2214-7810
DOI: 10.1016/j.addma.2023.103531 - , , , , , :
Polyamide 11 nanocomposite feedstocks for powder bed fusion via liquid-liquid phase separation and crystallization
In: Powder Technology 424 (2023), Article No.: 118563
ISSN: 0032-5910
DOI: 10.1016/j.powtec.2023.118563
2022
- , , , , , , :
Control of Crystallization of PBT-PC Blends by Anisotropic SiO2 and GeO2 Glass Flakes
In: Polymers 14 (2022), Article No.: 4555
ISSN: 2073-4360
DOI: 10.3390/polym14214555 - , , , , :
Magnetizing Polymer Particles with a Solvent-Free Single Stage Process Using Superparamagnetic Iron Oxide Nanoparticles (SPION)s
In: Polymers 14 (2022), p. 4178
ISSN: 2073-4360
DOI: 10.3390/polym14194178 - , , , , , , , , , :
Enhancing Photoelectric Powder Deposition of Polymers by Charge Control Substances
In: Polymers 14 (2022), p. 1332
ISSN: 2073-4360
DOI: 10.3390/polym14071332 - , , , , , , , :
Production and analysis of electrically conductive polymer – Carbon-black composites for powder based Additive Manufacturing
In: Procedia CIRP 111 (2022), p. 18-22
ISSN: 2212-8271
DOI: 10.1016/j.procir.2022.08.107 - , , , , , :
Temperature influence on the triboelectric powder charging during dry coating of polypropylene with nanosilica particles
In: Powder Technology 399 (2022), Article No.: 117224
ISSN: 0032-5910
DOI: 10.1016/j.powtec.2022.117224 - , , , , , :
Abrasion-Induced Acceleration of Melt Crystallisation of Wet Comminuted Polybutylene Terephthalate (PBT)
In: Polymers 14 (2022), p. 810
ISSN: 2073-4360
DOI: 10.3390/polym14040810 - , , , :
Production of spherical ester wax powders by melt emulsification for Additive Manufacturing
12th CIRP Conference on Photonic Technologies, LANE 2022 (Erlangen, 4. September 2022 - 8. September 2022)
In: M. Schmidt, F. Vollertsen, B.M. Colosimo (ed.): Procedia CIRP 2022
DOI: 10.1016/j.procir.2022.08.110
2021
- , , , , , , , :
Improvement of polymer properties for powder bed fusion by combining in situ PECVD nanoparticle synthesis and dry coating
In: Plasma Processes and Polymers (2021)
ISSN: 1612-8850
DOI: 10.1002/ppap.202000247
2020
- , , , , :
Production of PBT/PC multi-material particles via a combination of co-grinding and spray-agglomeration for powder bed fusion
In: Procedia CIRP 94 (2020), p. 100-104
ISSN: 2212-8271
DOI: 10.1016/j.procir.2020.09.020
Maximilian Uttinger – Multi-dimensional approaches for the sedimentation analysis of model systems and technical dispersions
2024
- , , , , , , , :
In-Situ Investigation of Structural Changes of Biomolecules at Interfaces and under the Influence of Fluid Mechanical Stress
Springer Nature, 2024
ISBN: 9783031631641
DOI: 10.1007/978-3-031-63164-1_13
2023
- , , , , , , , :
The Stokes–Einstein–Sutherland Equation at the Nanoscale Revisited
In: Small (2023)
ISSN: 1613-6829
DOI: 10.1002/smll.202304670 - , , , , , , , , , :
Green room temperature synthesis of silver-gold alloy nanoparticles
In: Nanoscale Advances (2023)
ISSN: 2516-0230
DOI: 10.1039/d2na00793b
2022
- , , , , :
Effect of protein adsorption on the dissolution kinetics of silica nanoparticles
In: Colloids and Surfaces B-Biointerfaces 214 (2022), p. 112466
ISSN: 0927-7765
DOI: 10.1016/j.colsurfb.2022.112466 - , , , , , , , , , :
Multidimensional characterization of noble metal alloy nanoparticles by multiwavelength analytical ultracentrifugation
In: Nanoscale (2022)
ISSN: 2040-3364
DOI: 10.1039/d2nr02633c - , , , , , , :
A widely applicable method to stabilize nanoparticles comprising oxygen-rich functional groups
In: Powder Technology 407 (2022), Article No.: 117633
ISSN: 0032-5910
DOI: 10.1016/j.powtec.2022.117633 - , , , , :
Classification and characterization of multimodal nanoparticle size distributions by size-exclusion chromatography
In: Nanoscale (2022)
ISSN: 2040-3364
DOI: 10.1039/d2nr04688a - , , , , , :
Hydrodynamic simulations of sedimenting dilute particle suspensions under repulsive DLVO interactions
In: Soft Matter 18 (2022), p. 2157-2167
ISSN: 1744-683X
DOI: 10.1039/d1sm01294k - , , , , , , , , , , :
Determination of the yield, mass and structure of silver patches on colloidal silica using multiwavelength analytical ultracentrifugation
In: Journal of Colloid and Interface Science 607 (2022), p. 698-710
ISSN: 0021-9797
DOI: 10.1016/j.jcis.2021.08.161
URL: https://www.researchgate.net/publication/354270035_Determination_of_the_yield_mass_and_structure_of_silver_patches_on_colloidal_silica_using_multiwavelength_analytical_ultracentrifugation - , , , , , , , , , , , , , , :
Versatile strategy for homogeneous drying patterns of dispersed particles
In: Nature Communications 13 (2022)
ISSN: 2041-1723
DOI: 10.1038/s41467-022-30497-z - , , , , , , , , , , , :
Determination of specific and non-specific protein-protein interactions for beta-lactoglobulin by analytical ultracentrifugation and membrane osmometry experiments
In: Soft Matter (2022)
ISSN: 1744-683X
DOI: 10.1039/d2sm00908k - , , , , , , , , , , , :
Determination of specific and non-specific protein-protein interactions for beta-lactoglobulin by analytical ultracentrifugation and membrane osmometry experiments
In: Soft Matter (2022)
ISSN: 1744-683X
DOI: 10.1039/d2sm00908k
2021
- , , , , :
Progress in Multidimensional Particle Characterization
In: KONA Powder and Particle Journal (2021)
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Towards recombinantly produced milk proteins: Physicochemical and emulsifying properties of engineered whey protein beta-lactoglobulin variants
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Structure and adsorption behavior of high hydrostatic pressure-treated β-lactoglobulin
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2020
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New Prospects for Particle Characterization Using Analytical Centrifugation with Sector-Shaped Centerpieces
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2019
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Influence of the polydispersity of pH 2 and pH 3.5 beta-lactoglobulin amyloid fibril solutions on analytical methods
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A Comprehensive Brownian Dynamics Approach for the Determination of Non-ideality Parameters from Analytical Ultracentrifugation
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2017
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A Comprehensive Brownian Dynamics-Based Forward Model for Analytical (Ultra)Centrifugation
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Sebastian Süß – Investigation of Nanoparticle Classification using Liquid Chromatography
2020
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Effects of filter structure, flow velocity, particle concentration and fouling on the retention efficiency of ultrafiltration for sub-20 nm gold nanoparticles
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Chromatographic property classification of narrowly distributed ZnS quantum dots
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2019
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Suspension- and powder-based derivation of Hansen dispersibility parameters for zinc oxide quantum dots
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Quantitative Evaluation of Fullerene Separation by Liquid Chromatography
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2018
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Retention mechanisms of 1.7 nm ZnS quantum dots and sub-20 nm Au nanoparticles in ultrafiltration membranes
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Quantifying Surface Properties of Silica Particles by Combining Hansen Parameters and Reichardt's Dye Indicator Data
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Quantitative evaluation of nanoparticle classification by size-exclusion chromatography
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Determination of Hansen parameters for particles: A standardized routine based on analytical centrifugation
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Determination of Hansen parameters for particles: A standardized routine based on analytical centrifugation
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2017
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Liquid filtration of nanoparticles through track-etched membrane filters under unfavorable and different ionic strength conditions: Experiments and modeling
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2016
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Classification of Nanoparticles by Size-Selective Precipitation: The Role of Solubility Parameters
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2015
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Classification of Zinc Sulfide Quantum Dots by Size: Insights into the Particle Surface–Solvent Interaction of Colloids
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New possibilities of accurate particle characterisation by applying direct boundary models to analytical centrifugation
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Tobias Schikarski – Direkte numerische Simulation der Fällung von organischen Nanopartikeln
2024
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Mechanistic insights into silver-gold nanoalloy formation by two-dimensional population balance modeling
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2023
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Efficient quenching sheds light on early stages of gold nanoparticle formation
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Highly accurate and numerical tractable coupling of nanoparticle nucleation, growth and fluid flow
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Population balance modeling of InP quantum dots: Experimentally enabled global optimization to identify unknown material parameters
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2022
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En route towards a comprehensive dimensionless representation of precipitation processes
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Quantitative modeling of precipitation processes
In: Chemical Engineering Journal 444 (2022)
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2020
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eMoM: Exact method of moments—Nucleation and size dependent growth of nanoparticles
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Modeling and Simulation of Process Technology for Nanoparticulate Drug Formulations-A Particle Technology Perspective.
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2019
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Influence of Mixing on the Precipitation of Organic Nanoparticles: A Lagrangian Perspective on Scale-up Based on Self-Similar Distributions
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Inflow boundary conditions determine T-mixer efficiency
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2017
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Direct numerical simulation of water–ethanol flows in a T-mixer
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Thomas Meincke – Flow processes for the wet chemical electroless deposition of noble metal nano coatings on dielectric colloidal and macroscopic substrates
2023
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Continuous flow synthesis of plasmonic gold patches and nearly-complete nanoshells on polystyrene core particles
In: Particuology 75 (2023), p. 137-150
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2022
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Determination of the yield, mass and structure of silver patches on colloidal silica using multiwavelength analytical ultracentrifugation
In: Journal of Colloid and Interface Science 607 (2022), p. 698-710
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2018
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Anisometric engineering of particle interfaces: Multidimensional characterization and gram‐scale production
ProcessNet‐Jahrestagung und 33. DECHEMA‐Jahrestagung der Biotechnologen 2018 (Aachen, 11. September 2018 - 13. September 2018)
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On the Size-Determining Role of the Comonomer in the Nucleation and Growth of Cationic Polystyrene Latex via Emulsion Polymerization
In: Macromolecular Chemistry and Physics 219 (2018), Article No.: 1700457
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2017
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Heterogeneous nucleation and surface conformal growth of silver nanocoatings on colloidal silica in a continuous flow static T-mixer
In: Chemical Engineering Journal 308 (2017), p. 89-100
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Engineering the surface functionality of 45S5 bioactive glass-based scaffolds by the heterogeneous nucleation and growth of silver particles
In: Journal of Materials Science 52 (2017), p. 9082-9090
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Vanessa Hinterberger – Optimization and chromatographic purification of highly fluorescent bottom-up Carbon Dots in aqueous solution
2021
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Well-separated water-soluble carbon dots via gradient chromatography
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ISSN: 2040-3364
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2019
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Purification and structural elucidation of carbon dots by column chromatography
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Quantitative Evaluation of Fullerene Separation by Liquid Chromatography
In: Journal of Physical Chemistry C 123 (2019), p. 16747-16756
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2017
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Shedding light on the effective fluorophore structure of high fluorescence quantum yield carbon nanodots
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Michael Haderlein – Numerical investigation of particle formation processes
2020
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Flowsheet simulation of integrated precipitation processes
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2017
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Continuous synthesis of CuInS2 quantum dots
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A widely applicable tool for modeling precipitation processes
In: Computers & Chemical Engineering 98 (2017), p. 197-208
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2016
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Numerical Investigation of Flow Patterns and Concentration Profiles in Y-Mixers
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Spectra library: An assumption-free in situ method to access the kinetics of catechols binding to colloidal ZnO quantum dots
In: Angewandte Chemie International Edition 55 (2016), p. 932-935
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Ein verallgemeinertes Modellierungswerkzeug für die numerisch effiziente Beschreibung mehrphasiger Fällungsprozesse
In: Chemie Ingenieur Technik 88 (2016), p. 1358
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2015
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FIMOR: An efficient simulation for ZnO quantum dot ripening applied to the optimization of nanoparticle synthesis
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From in situ characterization to process control of quantum dot systems
7th World Congress on Particle Technology, WCPT 2014 (Bejing, 19. May 2014 - 22. May 2014)
DOI: 10.1016/j.proeng.2015.01.129
2014
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Shedding light on the growth of gold nanoshells
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2013
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Growth of gold nanoshells on colloidal silica characterized by in situ second-harmonic generation
Engineering Sciences and Fundamentals 2013 - Core Programming Area at the 2013 AIChE Annual Meeting: Global Challenges for Engineering a Sustainable Future (San Francisco, 3. November 2013 - 8. November 2013)
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2012
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Second Harmonic Generation from metallic and dielectric spherical nanoparticles
2012 Conference on Lasers and Electro-Optics, CLEO 2012 (San Jose, CA, 6. May 2012 - 11. May 2012)
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Heidemarie Embrechts – In Situ Study of the Solvothermal Self-Assembly of Hierarchical Particles
2020
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In Situ Monitoring of Particle Formation with Spectroscopic and Analytical Techniques Under Solvothermal Conditions
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In situ Raman and FTIR spectroscopic study on the formation of the isomers MIL-68(Al) and MIL-53(Al)
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Role of Prenucleation Building Units in Determining Metal-Organic Framework MIL-53(Al) Morphology
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Observing Oriented Attachment during Mesocrystal Growth with in Situ Dynamic Light Scattering (DLS)
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2018
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Elucidation of the Formation Mechanism of Metal-Organic Frameworks via in-Situ Raman and FTIR Spectroscopy under Solvothermal Conditions
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2017
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Shedding light on the effective fluorophore structure of high fluorescence quantum yield carbon nanodots
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Maximilian A. Dechet – Manufacturing and characterization of feedstock powders for powder bed fusion of polymers
2022
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Parameter study for the production of semi-crystalline polyetherimide particles via liquid-liquid phase separation and precipitation
12th CIRP Conference on Photonic Technologies, LANE 2022 (Erlangen, 4. September 2022 - 8. September 2022)
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Semi‐Crystalline Polyetherimide Microparticles via Liquid‐Liquid Phase Separation and Precipitation
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2021
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A novel, precipitated polybutylene terephthalate feedstock material for powder bed fusion of polymers (PBF): Material development and initial PBF processability
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Flüssig-Flüssig-Phasentrennung und Fällung zur Herstellung neuartiger Ausgangsmaterialien für das pulverbettbasierte Schmelzen von Polymeren
17th Rapid.Tech 3D Conference (Erfurt, 22. June 2021 - 23. June 2021)
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2020
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Development of polyoxymethylene particles via the solution-dissolution process and application to the powder bed fusion of polymers
In: Materials 13 (2020), Article No.: 1535
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Development of poly(L-lactide) (PLLA) microspheres precipitated from triacetin for application in powder bed fusion of polymers
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On the development of polymer particles for laser powder bed fusion via precipitation
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Thermal rounding of micron-sized polymer particles in a downer reactor: direct vs indirect heating
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Improving the coloring of polypropylene materials for powder bed fusion by plasma surface functionalization
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2019
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Production of polyamide 11 microparticles for Additive Manufacturing by liquid-liquid phase separation and precipitation
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Formation of spherical micron-sized polyamide particles for additive manufacturing via liquid-liquid phase separation
33rd International Conference of the Polymer Processing Society, PPS 2017 (Cancun, MEX, 10. December 2017 - 14. December 2017)
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Production of Spherical Micron-Sized Polymer Particles for Additive Manufacturing by Liquid Phase Processes
Europe/Africa Regional Dresden Conference of the Polymer-Processing-Society (PPS) (Dresden, 27. June 2017 - 29. June 2017)
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Manufacturing and Application of PA11-Glass Fiber Composite Particles for Selective Laser Sintering
30th Annual International Solid Freeform Fabrication Symposium 2019 (Austin, TX)
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Manufacturing of nanoparticle-filled PA11 composite particles for selective laser sintering
30th Annual International Solid Freeform Fabrication Symposium 2019 (Austin, TX)
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Analysis of tribo-charging during powder spreading in selective laser sintering: Assessment of polyamide 12 powder ageing effects on charging behavior
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Grain Structure Evolution of Al–Cu Alloys in Powder Bed Fusion with Laser Beam for Excellent Mechanical Properties
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Process Routes towards Novel Polybutylene Terephthalate – Polycarbonate Blend Powders for Selective Laser Sintering
30th Annual International Solid Freeform Fabrication Symposium 2019 (Austin, TX)
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Characterization of Polymer Powders for Selective Laser Sintering
30th Annual International Solid Freeform Fabrication Symposium 2019 (Austin, TX)
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Novel process routes towards the production of spherical polymer powders for selective laser sintering
33rd International Conference of the Polymer Processing Society, PPS 2017 (Cancun, MEX, 10. December 2017 - 14. December 2017)
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Electrophotographic Multilayer Powder Pattern Deposition for Additive Manufacturing
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Kunststoffpulver für die Additive Fertigung: Vorhersage des Prozessverhaltens mittels prozessangepasster Analyse / Plastic powder for Additive Manufacturing: Prediction of process behavior based on process adapted characterization
7. Industriekolloquium des Sonderforschungsbereichs 814 (Nürnberg, 12. December 2019 - 12. December 2019)
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2018
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Spherical Polybutylene Terephtalate (PBT)-Polycarbonate (PC) Blend Particles by Mechanical Alloying and Thermal Rounding
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Herstellung und Charakterisierung von Pulvern für das selektive Laserstrahlschmelzen von Kunststoffen aus Flüssigphasenprozessen am Beispiel von PA11
6. Industriekolloquium des Sonderforschungsbereichs 814 - Additive Fertigung (Nürnberg, 12. December 2019 - 12. December 2019)
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Production of spherical semi-crystalline polycarbonate microparticles for Additive Manufacturing by liquid-liquid phase separation
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Salvatore Chiera – Fabrication of liquid-infused surfaces via mussel-inspired chemistry
2023
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Mechanical Stability of Liquid-Infused Surfaces Based on Mussel-Inspired Polydopamine Chemistry
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2022
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From Sticky to Slippery: Self-Functionalizing Lubricants for in Situ Fabrication of Liquid-Infused Surfaces
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Versatile strategy for homogeneous drying patterns of dispersed particles
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2021
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Substrate-Independent Design of Liquid-Infused Slippery Surfaces via Mussel-Inspired Chemistry
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2020
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Bottom-Up Design of Composite Supraparticles for Powder-Based Additive Manufacturing
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Markus Wheeldon – Zerkleinerungstechnische Charakterisierung einer Pendelmühle
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Investigation of the comminution process in pendular roller mills
In: International Journal of Mineral Processing 136 (2015), p. 26-31
ISSN: 0301-7516
DOI: 10.1016/j.minpro.2014.09.013
Simon Wawra – Optical and hydrodynamic characterization of nanoparticles via analytical ultracentrifugation
2024
- , , , , , , :
Development of an advanced multiwavelength emission detector for the analytical ultracentrifuge
In: Nanoscale Advances (2024)
ISSN: 2516-0230
DOI: 10.1039/d3na00980g
2023
- , , , , , , , :
The Stokes–Einstein–Sutherland Equation at the Nanoscale Revisited
In: Small (2023)
ISSN: 1613-6829
DOI: 10.1002/smll.202304670 - , , , , , , , :
Multidimensional Fractionation of Particles
In: Separations 10 (2023), Article No.: 252
ISSN: 2297-8739
DOI: 10.3390/separations10040252 - , , , , , , , , , , :
Determination of 2D Particle Size Distributions in Plasmonic Nanoparticle Colloids via Analytical Ultracentrifugation: Application to Gold Bipyramids.
In: ACS nano (2023)
ISSN: 1936-0851
DOI: 10.1021/acsnano.2c12257
2021
- , , , , :
Progress in Multidimensional Particle Characterization
In: KONA Powder and Particle Journal (2021)
ISSN: 2187-5537
DOI: 10.14356/kona.2022005
2020
- , , , , , :
Estimation of bivariate probability distributions of nanoparticle characteristics, based on univariate measurements
In: Inverse Problems in Science and Engineering (2020)
ISSN: 1741-5977
DOI: 10.1080/17415977.2020.1849181 - , , , , , , , :
New Prospects for Particle Characterization Using Analytical Centrifugation with Sector-Shaped Centerpieces
In: Particle & Particle Systems Characterization (2020)
ISSN: 0934-0866
DOI: 10.1002/ppsc.202000108 - , , , , , , :
Measurement of length distribution of beta-lactoglobulin fibrils by multiwavelength analytical ultracentrifugation
In: European Biophysics Journal (2020)
ISSN: 0175-7571
DOI: 10.1007/s00249-020-01421-4
2019
- , , , :
Multidimensional Particle Size Distributions and Their Application to Nonspherical Particle Systems in Two Dimensions
In: Particle & Particle Systems Characterization (2019), Article No.: 1800554
ISSN: 0934-0866
DOI: 10.1002/ppsc.201800554 - , , , , , , , , , , :
A Comprehensive Brownian Dynamics Approach for the Determination of Non-ideality Parameters from Analytical Ultracentrifugation
In: Langmuir 35 (2019), p. 11491 - 11502
ISSN: 0743-7463
DOI: 10.1021/acs.langmuir.9b01916 - , , , , , :
A multiwavelength emission detector for analytical ultracentrifugation
In: Nanoscale Advances (2019)
ISSN: 2516-0230
DOI: 10.1039/C9NA00487D
2018
- , , , , , :
Determination of the two-dimensional distributions of gold nanorods by multiwavelength analytical ultracentrifugation
In: Nature Communications 9 (2018), Article No.: 4898
ISSN: 2041-1723
DOI: 10.1038/s41467-018-07366-9 - , , , , , , :
Ionomer and protein size analysis by analytical ultracentrifugation and electrospray scanning mobility particle sizer
In: European Biophysics Journal 47 (2018), p. 777-787
ISSN: 0175-7571
DOI: 10.1007/s00249-018-1314-2
2017
- , , , , , , , , , , :
Structural factors controlling size reduction of graphene oxide in liquid processing
In: Carbon 125 (2017), p. 360-369
ISSN: 0008-6223
DOI: 10.1016/j.carbon.2017.09.066 - , , , , :
Brownian dynamics simulations of analytical ultracentrifugation experiments exhibiting hydrodynamic and thermodynamic non-ideality
In: Nanoscale 9 (2017), p. 17770-17780
ISSN: 2040-3364
DOI: 10.1039/c7nr06583c
Junwei Wang – Colloidal Clusters in Spherical Confinement
2023
- , , , , , , , , , :
Fast Gas-Adsorption Kinetics in Supraparticle-Based MOF Packings with Hierarchical Porosity
In: Advanced Materials (2023)
ISSN: 0935-9648
DOI: 10.1002/adma.202305980 - , , , , , , , :
Early-stage bifurcation of crystallization in a sphere
In: Nature Communications 14 (2023), Article No.: 5299
ISSN: 2041-1723
DOI: 10.1038/s41467-023-41001-6
2022
- , , , , , , , , , :
Crystal Structure and Defect Analysis of Colloidal Supraparticles by Lab-Based X-ray Microscopy
In: Microscopy and Microanalysis 28 (2022), p. 306-309
ISSN: 1431-9276
DOI: 10.1017/S1431927622002008 - , , , , , , , , , , , , :
Coloration in Supraparticles Assembled from Polyhedral Metal-Organic Framework Particles
In: Angewandte Chemie International Edition (2022)
ISSN: 1433-7851
DOI: 10.1002/anie.202117455
2021
- , , , :
Tailored Double Emulsions Made Simple
In: Advanced Materials (2021), p. e2107338
ISSN: 0935-9648
DOI: 10.1002/adma.202107338 - , , , , , , , :
Influence of Surfactant-Mediated Interparticle Contacts on the Mechanical Stability of Supraparticles
In: Journal of Physical Chemistry C (2021)
ISSN: 1932-7447
DOI: 10.1021/acs.jpcc.1c06839 - , , , , , , , , :
Mechanics of colloidal supraparticles under compression
In: Science Advances 7 (2021), Article No.: eabj0954
ISSN: 2375-2548
DOI: 10.1126/sciadv.abj0954
2020
- , , , , , :
Structural Color of Colloidal Clusters as a Tool to Investigate Structure and Dynamics
In: Advanced Functional Materials (2020), Article No.: 1907730
ISSN: 1616-301X
DOI: 10.1002/adfm.201907730
2019
- , , , , , , :
Scale-Bridging 3D-Analysis of Colloidal Clusters Using 360° Electron Tomography and X-Ray Nano-CT
DOI: 10.1017/S1431927619002691
URL: https://www.cambridge.org/core/journals/microscopy-and-microanalysis/article/scalebridging-3danalysis-of-colloidal-clusters-using-360-electron-tomography-and-xray-nanoct/0FD7C5C09F258792F594A66FAC2E1A7B - , , , , , , :
Scale-Bridging 3D-Analysis of Colloidal Clusters Using 360° Electron Tomography and X-Ray Nano-CT
In: Microscopy and Microanalysis (2019)
ISSN: 1431-9276
DOI: 10.1017/S1431927619002691 - , , , , , , :
Free Energy Landscape of Colloidal Clusters in Spherical Confinement
In: Acs Nano (2019)
ISSN: 1936-0851
DOI: 10.1021/acsnano.9b03039
2018
- , , , , , , , :
Bottom-Up Assembly of Silica and Bioactive Glass Supraparticles with Tunable Hierarchical Porosity
In: Langmuir 34 (2018), p. 2063-2072
ISSN: 0743-7463
DOI: 10.1021/acs.langmuir.7b03904 - , , , , , , :
Magic number colloidal clusters as minimum free energy structures
In: Nature Communications 9 (2018), Article No.: 5259
ISSN: 2041-1723
DOI: 10.1038/s41467-018-07600-4
Andreas Güldenpfennig – Fällung und Phasenumwandlung anorganischer Nanopartikel: Modellbasierte Vorhersage von Stoffdaten, Partikelform und Zusammensetzung
2022
- , , , , :
Quantitative modeling of precipitation processes
In: Chemical Engineering Journal 444 (2022)
ISSN: 1385-8947
DOI: 10.1016/j.cej.2022.136195
2019
- , , :
In situ investigations on the amorphous to crystalline phase transformation of precursors for methanol synthesis catalysts
In: Chemical Engineering Journal 369 (2019), p. 996-1004
ISSN: 1385-8947
DOI: 10.1016/j.cej.2019.03.088 - , , :
How to Estimate Material Parameters for Multiphase, Multicomponent Precipitation Modeling
In: Crystal Growth and Design 19 (2019), p. 2785-2793
ISSN: 1528-7483
DOI: 10.1021/acs.cgd.9b00027
2018
- , , , :
Modelling the two-dimensional growth and oriented attachment of goethite nanorods synthesized via oxidation of aqueous ferrous hydroxide slurries
In: Chemical Engineering Journal 347 (2018), p. 798-807
ISSN: 1385-8947
DOI: 10.1016/j.cej.2018.04.150
2017
- , , , :
A widely applicable tool for modeling precipitation processes
In: Computers & Chemical Engineering 98 (2017), p. 197-208
ISSN: 0098-1354
DOI: 10.1016/j.compchemeng.2016.12.007
Eric Sidney Aaron Görlitzer – Chiral Plasmonic Nanostructures via Colloidal Templating
Author’s publications:
2023
- , , , , , , , :
Molecular-Induced Chirality Transfer to Plasmonic Lattice Modes
In: ACS Photonics (2023)
ISSN: 2330-4022
DOI: 10.1021/acsphotonics.3c00174 - , , , :
How Colloidal Lithography Limits the Optical Quality of Plasmonic Nanohole Arrays
In: Langmuir 39 (2023), p. 5222 - 5229
ISSN: 0743-7463
DOI: 10.1021/acs.langmuir.3c00328 - , , , , :
Quantitative Optical and Structural Comparison of 3D and (2+1)D Colloidal Photonic Crystals
In: Langmuir 39 (2023), p. 5211 - 5221
ISSN: 0743-7463
DOI: 10.1021/acs.langmuir.3c00293
2022
- , , , , , :
Self-Assembled Au Nanoparticle Monolayers on Silicon in Two- and Three-Dimensions for Surface-Enhanced Raman Scattering Sensing
In: ACS Applied Nano Materials (2022)
ISSN: 2574-0970
DOI: 10.1021/acsanm.2c01904 - , , , , , :
N-Methyl-2-pyrrolidone as a Reaction Medium for Gold(III)-Ion Reduction and Star-like Gold Nanostructure Formation
In: ACS Omega 7 (2022), p. 9484-9495
ISSN: 2470-1343
DOI: 10.1021/acsomega.1c06835 - , , , , , , , , , , , , :
Coloration in Supraparticles Assembled from Polyhedral Metal-Organic Framework Particles
In: Angewandte Chemie International Edition (2022)
ISSN: 1433-7851
DOI: 10.1002/anie.202117455 - , , , , , , , , , :
Chiral Plasmonic Shells: High-Performance Metamaterials for Sensitive Chiral Biomolecule Detection
In: ACS Applied Materials and Interfaces (2022)
ISSN: 1944-8244
DOI: 10.1021/acsami.2c16752
2021
- , , , , , , , , , , , , , :
A Self‐Ordered Nanostructured Transparent Electrode of High Structural Quality and Corresponding Functional Performance
In: Small NA (2021), Article No.: 202100487
ISSN: 1613-6829
DOI: 10.1002/smll.202100487
URL: https://onlinelibrary.wiley.com/doi/10.1002/smll.202100487 - , , , , :
The Beginner's Guide to Chiral Plasmonics: Mostly Harmless Theory and the Design of Large-Area Substrates
In: Advanced Optical Materials (2021)
ISSN: 2195-1071
DOI: 10.1002/adom.202100378 - , , , , , , :
Anisotropic silicon nanowire arrays fabricated by colloidal lithography
In: Nanoscale Advances (2021)
ISSN: 2516-0230
DOI: 10.1039/d1na00259g
2020
- , , , , , , , :
Chiral Surface Lattice Resonances
In: Advanced Materials (2020)
ISSN: 0935-9648
DOI: 10.1002/adma.202001330 - , , , , :
Addressing the plasmonic hotspot region by site-specific functionalization of nanostructures
In: Nanoscale Advances 2 (2020), p. 394-400
ISSN: 2516-0230
DOI: 10.1039/c9na00757a - , , , , , :
Structural Color of Colloidal Clusters as a Tool to Investigate Structure and Dynamics
In: Advanced Functional Materials (2020), Article No.: 1907730
ISSN: 1616-301X
DOI: 10.1002/adfm.201907730 - , , , , , , , , :
Spatioselective Deposition of Passivating and Electrocatalytic Layers on Silicon Nanowire Arrays.
In: ACS Applied Materials and Interfaces (2020)
ISSN: 1944-8244
DOI: 10.1021/acsami.0c14013
2019
- , , , , :
Large-Area 3D Plasmonic Crescents with Tunable Chirality
In: Advanced Optical Materials (2019), Article No.: 1801770
ISSN: 2195-1071
DOI: 10.1002/adom.201801770
2018
- , , :
Bioinspired Photonic Pigments from Colloidal Self-Assembly
In: Advanced Materials 30 (2018), Article No.: 1706654
ISSN: 0935-9648
DOI: 10.1002/adma.201706654 - , , , , , , :
Surface Patterning with SiO2@PNiPAm Core–Shell Particles
In: ACS Omega 3 (2018), p. 12089-12098
ISSN: 2470-1343
DOI: 10.1021/acsomega.8b01985
URL: https://pubs.acs.org/doi/abs/10.1021/acsomega.8b01985
Yaraset Alejandra Galván Domínguez – Attaching ionic liquids to surfaces: from repellent surfaces to catalysis
Marius Christ – Methoden zur Funktionalisierung und Beschichtung von Polymerpartikeln für die additive Fertigung
2018
- , , , :
Treatment of polymer powders by combining an atmospheric plasma jet and a fluidized bed reactor
In: Powder Technology 325 (2018), p. 490-497
ISSN: 0032-5910
DOI: 10.1016/j.powtec.2017.11.016
2017
- , , , , :
New approaches towards production of polymer powders for selective laser beam melting of polymers
32nd International Conference of the Polymer Processing Society, PPS 2016
DOI: 10.1063/1.5016797
2016
- , , , :
Design and scale-up of a semi-industrial downer-reactor for the rounding of irregular polymer particles
31st International Conference of the Polymer Processing Society, PPS 2015 (Jeju Island Korea, 7. June 2015 - 11. June 2015)
In: 2016 AIP Publishing LLC (ed.): AIP Conference Proceedings 1713 2016
DOI: 10.1063/1.4942289 - , , , , :
Characterization of a downer reactor for particle rounding
In: Powder Technology (2016)
ISSN: 0032-5910
DOI: 10.1016/j.powtec.2017.01.006 - , , , , , , , :
Production of polybutylene terephtalate glass composite powders and characterization for processing in selective laser sintering
26th Annual International Solid Freeform Fabrication Symposium – An Additive Manufacturing Conference (Austin, 8. August 2016 - 10. August 2016) - , , , , :
Herstellung und Funktionalisierung neuartiger Pulverwerkstoffe für die additive Fertigung
In: Chemie Ingenieur Technik 88 (2016)
ISSN: 0009-286X
DOI: 10.1002/cite.201650354 - , , , , :
Novel approaches for the production of polymer powders for selective laser beam melting of polymers
27th Annual International Solid Freeform Fabrication Symposium - An Additive Manufacturing Conference, SFF 2016 (Austin, Texas, 8. August 2016 - 10. August 2016)
In: Solid Freeform Fabrication 2016: Proceedings of the 26th Annual International Solid Freeform Fabrication Symposium – An Additive Manufacturing Conference 2016
Open Access: https://www.sffsymposium.org/
URL: https://www.scopus.com/record/display.uri?eid=2-s2.0-85058166373&origin=inward - , , , , , , , :
Optimized polybutylene terephthalate powders for selective laser beam melting
In: Chemical Engineering Science 156 (2016), p. 1-10
ISSN: 0009-2509
DOI: 10.1016/j.ces.2016.09.009 - , , , , , , , , :
A novel process for production of spherical PBT powders and their processing behavior during laser beam melting
31st International Conference of the Polymer Processing Society, PPS 2015 (Jeju Island Korea, 7. June 2015 - 11. June 2015)
In: 31st International Conference of the POLYMER PROCESSING SOCIETY 2016
DOI: 10.1063/1.4942343
2015
- , , , , , , , :
Increasing flowability and bulk density of PE-HD powders by a dry particle coating process and impact on LBM processes
In: Rapid Prototyping Journal 21 (2015), p. 697-704
ISSN: 1355-2546
DOI: 10.1108/RPJ-07-2013-0074 - , , , , , , , , , , , :
Effect of process conditions on mechanical behavior of aluminium wrought alloy EN AW-2618 additively manufactured by Laser Beam Melting in powder bed
Lasers in Manufacturing Conference 2015 (Messe München, 22. June 2015 - 25. June 2015)
In: Proceedings of Laser in Manfacturing Conference 2015 2015
Open Access: http://www.wlt.de/lim/Proceedings/Stick/PDF/Contribution146_final.pdf
URL: http://www.wlt.de/lim/Proceedings/Stick/4.html - , , , , :
New approach towards production of optimized polymer powders for additive manufacturing
8th International Conference for Conveying and Handling of Particulate Solids, CHoPS 2015 (Tel Aviv, 3. May 2015 - 7. May 2015)
In: 8th International Conference for Conveying and Handling of Particulate Solids (CHoPS2015) 2015
DOI: 10.1080/02726351.2016.1190902 - , , , :
Functionalization of polymer particles for additive manufacturing processes by plasma treatment in a fluidized bed reactor
8th International Conference for Conveying and Handling of Particulate Solids, CHoPS 2015 (Tel Aviv, Israel, 3. May 2015 - 7. May 2015)
DOI: 10.1080/02726351.2016.1190902 - , , , , , , :
Rounding of irregular polymer particles in a downer reactor
7th World Congress on Particle Technology, WCPT 2014 (Bejing, 19. May 2014 - 22. May 2014)
In: Procedia Engineering 102 2015
DOI: 10.1016/j.proeng.2015.01.119 - , , , , :
Functionalization of polymer powders for SLS-processes using an atmospheric plasma jet in a fluidized bed reactor
30th International Conference of the Polymer Processing Society, PPS 2014 (Cleveland, 8. June 2014 - 12. June 2014)
In: AIP Conference Proceedings 1664 2015
DOI: 10.1063/1.4918517 - , , , , , , :
A novel process chain for the production of spherical sls polymer powders with good flowability
7th World Congress on Particle Technology, WCPT 2014 (Bejing, 19. May 2014 - 22. May 2014)
In: Proceedings of the 7th World Congress on Particle Technology, WCPT 2014 2015
DOI: 10.1016/j.proeng.2015.01.123 - , , , , , , :
A novel process route for the production of spherical SLS polymer powders
30th International Conference of the Polymer Processing Society, PPS 2014 (Cleveland,Ohio, 6. June 2014 - 12. June 2014)
In: American Institute of physics (ed.): Proceedings of PPS-30 : the 30th International Conference of the Polymer Processing Society : conference papers : 6-12 June 2014, Cleveland, Ohio, USA 2015
DOI: 10.1063/1.4918518
2014
- , , , , , , :
Dry particle coating of polymer particles for tailor-made product properties
29th International Conference of the Polymer Processing Society, PPS 2013 (Nuremberg, 15. July 2013 - 19. July 2013)
In: AIP Conference Proceedings 1593 2014
DOI: 10.1063/1.4873774 - , , , , :
Qualification and modification of new polymer powders for laser beam melting using Ulbricht spheres
6th International Conference on Advanced Research in Virtual and Physical Prototyping, VR@P 2013 (PRT, 1. October 2013 - 5. October 2013)
In: High Value Manufacturing: Advanced Research in Virtual and Rapid Prototyping - Proceedings of the 6th International Conference on Advanced Research and Rapid Prototyping, VR@P 2013 2014 - , , , , , :
Production of Al/Cu-Particles and their potential for processing by Laser Beam Melting (LBM)
In: Physics Procedia 56 (2014), p. 125-134
ISSN: 1875-3892
DOI: 10.1016/j.phpro.2014.08.155
URL: http://www.sciencedirect.com/science/article/pii/S1875389214003009 - , , , , :
Functionalization of polymers using an atmospheric plasma jet in a fluidized bed reactor and its impact on selective laser melting processes
11th International Conference on Fluidized Bed Technology, CFB 2014 (Beijing, 14. May 2014 - 17. May 2014)
URL: https://www.scopus.com/record/display.uri?eid=2-s2.0-84902675038&origin=inward - , , , , :
Functionalization of polymers using an atmospheric plasma jet in a fluidized bed reactor and the impact on SLM-Processes
29th International Conference of the Polymer Processing Society (Nürnberg, 15. July 2013 - 19. July 2013)
DOI: 10.1063/1.4873878 - , , , , , , :
A novel process route for the production of spherical LBM polymer powders with small size and good flowability
In: Powder Technology 261 (2014), p. 78-86
ISSN: 0032-5910
DOI: 10.1016/j.powtec.2014.04.003
2013
Herbert Canziani – Process- and Product Development of Functional Supraparticles for Biomedical Additive Manufacturing
2022
- , , , , , , , , , , , , , :
Biodegradable Polylactide Supraparticle Powders with Functional Additives for Biomedical Additive Manufacturing
In: Advanced Functional Materials (2022), p. 2205730
ISSN: 1616-301X
DOI: 10.1002/adfm.202205730
2021
- , , , , :
Roughly Spherical: Tailored PMMA-SiO2 Composite Supraparticles with Optimized Powder Flowability for Additive Manufacturing
In: ACS Applied Materials and Interfaces (2021)
ISSN: 1944-8244
DOI: 10.1021/acsami.1c02264 - , , , , , , , , , , , :
Human laryngeal mucus from the vocal folds: Rheological characterization by particle tracking microrheology and oscillatory shear rheology
In: Applied Sciences 11 (2021), Article No.: 3011
ISSN: 2076-3417
DOI: 10.3390/app11073011 - , , , , , , , , :
Probing sedimentation non-ideality of particulate systems using analytical centrifugation
In: Soft Matter (2021)
ISSN: 1744-683X
DOI: 10.1039/D0SM01805H
2020
- , , , , , , , :
Bottom-Up Design of Composite Supraparticles for Powder-Based Additive Manufacturing
In: Small (2020), Article No.: 2002076
ISSN: 1613-6829
DOI: 10.1002/smll.202002076
Rubi Romeis – From characterization of anisotropic thin films to structure formation mechanisms and process control in dip coating
Author’s publications:
2018
- , , , , , , :
Synergy of Catechol-Functionalized Zinc Oxide Nanorods and Porphyrins in Layer-by-Layer Assemblies
In: Chemistry - A European Journal 24 (2018), p. 7896-7905
ISSN: 0947-6539
DOI: 10.1002/chem.201705327
2017
- , , , :
Individualization and Stabilization of Zinc Oxide Nanorods by Covalent Functionalization with Positively Charged Catechol Derivatives
In: Chemistry - A European Journal 23 (2017), p. 17257-17268
ISSN: 0947-6539
DOI: 10.1002/chem.201702109 - , , , , , , , :
Adaptive Behavior of Dynamic Orthoester Cryptands
In: Angewandte Chemie International Edition 56 (2017), p. 776-781
ISSN: 1433-7851
DOI: 10.1002/anie.201609855 - , , , , :
Determination of the length and diameter of nanorods by a combination of analytical ultracentrifugation and scanning mobility particle sizer
In: Nanoscale Horizons 2 (2017), p. 253-260
ISSN: 2055-6756
DOI: 10.1039/c7nh00050b
2016
- , , , :
Polarized Raman scattering and SEM combined full characterization of self-assembled nematic thin films
In: Nanoscale 8 (2016), p. 7672-7682
ISSN: 2040-3364
DOI: 10.1039/c6nr01440b - , , , , , :
From evaporation-induced self-assembly to shear-induced alignment
In: Nanoscale 8 (2016), p. 19882-19893
ISSN: 2040-3364
DOI: 10.1039/c6nr06586d
2014
- , , , , , , , , , :
Surface functionalization and electronic interactions of ZnO nanorods with a porphyrin derivative
In: ACS Applied Materials and Interfaces 6 (2014), p. 6724-6730
ISSN: 1944-8244
DOI: 10.1021/am5004552 - , , , , , :
Self-alignment of zinc oxide nanorods into a 3D-smectic phase
In: Thin Solid Films 562 (2014), p. 659--667
ISSN: 0040-6090
DOI: 10.1016/j.tsf.2014.03.025
2011
- , , , , , :
Microflow-based control of near-wall fluctuations for large viscous drag reduction
In: Microfluidics and Nanofluidics 11 (2011), p. 773-780
ISSN: 1613-4982
DOI: 10.1007/s10404-011-0842-1
URL: http://link.springer.com/content/pdf/10.1007%2Fs10404-011-0842-1
Thomas Nacken – Von Graphit zu Graphen – Delaminierung und quantitative Analyse
Benedikt Köninger – Charakterisierung des dynamischen Zerkleinerungsverhaltens in Fließbettgegenstrahlmühlen
Maximilian Domaschke – Aerosol synthesis and characterization of ultrafine nanoparticles and their application for downstream gas phase processes
Rebecca Dinkel – Nonlinear In Situ Spectroscopy on Nanoparticles
Nichtlineare optische Methoden wie Second-harmonic Scattering (SHS) weisen eine inhärente Grenzflächensensitivität auf, die für die in situ Charakterisierung kolloidaler Oberflächen eingesetzt werden kann. SHS erlaubt in situ Untersuchungen in Echtzeit bei guter zeitlicher Auflösung, wobei keine optischen Markermoleküle nötig sind. Das SHS Signal wurde für Nanopartikeln > 100 nm bereits gut untersucht. Diese Arbeit untersucht die Eignung von SHS als in situ Prozesskontrolle für Änderungen der Partikelgrenzfläche während eines Prozesses wie z.B. Ligandenaustausch oder Partikelbildung. Dafür wurde der Einfluss von Partikeleigenschaften wie Größe und Oberflächenterminierung auf das SHS-Signal für Nanopartikeln < 100 nm untersucht. Wie größenabhängige SHS-Messungen zeigten, können bereits Nanopartikeln mit Durchmessern weniger Nanometer gemessen werden, wobei das untere Detektionslimit materialabhängig ist. Auch die kritische Partikelgröße, welche den Übergang zwischen Oberflächen- und Volumenbeitrag zum SHS-Signal markiert, wird deutlich von dem Material der Nanopartikeln sowie ihrer linearen optischen Eigenschaften bestimmt. Die hohe Sensitivität von SHS gegenüber Veränderungen an der Partikelgrenzfläche erlaubte den Einsatz von SHS als in situ Prozesskontrolle von Ligandenaustauschprozessen an der Oberfläche von metallischen Nanopartikeln. Weiterhin wurde aus den gewonnen thermodynamischen und kinetischen Informationen ein Adsorptionsmodell aufgestellt und allgemeine Regeln für einen erfolgreichen Ligandenaustausch erhalten.
Marcel Rey – Soft Particles at Interfaces
2022
- , , , , , , , , , , , , :
Continuous, crystalline Sb2S3 ultrathin light absorber coatings in solar cells based on photonic concentric p-i-n heterojunctions
In: Nano Energy 103 (2022), Article No.: 107820
ISSN: 2211-2855
DOI: 10.1016/j.nanoen.2022.107820 - , , , , , :
Interfacial self-assembly of SiO2-PNIPAM core-shell particles with varied crosslinking density
In: Soft Matter (2022)
ISSN: 1744-683X
DOI: 10.1039/d2sm00644h - , , , , , , , , , , , , , , :
Versatile strategy for homogeneous drying patterns of dispersed particles
In: Nature Communications 13 (2022)
ISSN: 2041-1723
DOI: 10.1038/s41467-022-30497-z
2021
- , , , , , , , :
Soft Particles at Liquid Interfaces: From Molecular Particle Architecture to Collective Phase Behavior.
In: Langmuir 37 (2021), p. 5364-5375
ISSN: 0743-7463
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Collapse-induced phase transitions in binary interfacial microgel monolayers
In: Soft Matter 17 (2021), p. 4504-4516
ISSN: 1744-683X
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Interface-induced hysteretic volume phase transition of microgels: simulation and experiment
In: Soft Matter (2021)
ISSN: 1744-683X
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Anisotropic silicon nanowire arrays fabricated by colloidal lithography
In: Nanoscale Advances (2021)
ISSN: 2516-0230
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2020
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Synthesis of millimeter-sized polymer particles by seeded polymerization and their use as shape-designable liquid marble stabilizer
In: Chemistry Letters 49 (2020), p. 1282-1285
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Effect of Stabilizing Particle Size on the Structure and Properties of Liquid Marbles
In: Langmuir (2020), p. 13274-13284
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Particle Monolayer-Stabilized Light-Sensitive Liquid Marbles from Polypyrrole-Coated Microparticles
In: Langmuir 36 (2020), p. 2695-2706
ISSN: 0743-7463
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Chiral Surface Lattice Resonances
In: Advanced Materials (2020)
ISSN: 0935-9648
DOI: 10.1002/adma.202001330 - , , , , :
Poly-N-isopropylacrylamide Nanogels and Microgels at Fluid Interfaces
In: Accounts of Chemical Research (2020)
ISSN: 0001-4842
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Probing particle heteroaggregation using analytical centrifugation
In: Soft Matter 16 (2020), p. 3407-3415
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Pattern formation in two-dimensional hard-core/soft-shell systems with variable soft shell profiles
In: Soft Matter 16 (2020), p. 3564-3573
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DOI: 10.1039/d0sm00092b - , , , , , , , :
Morphology-Graded Silicon Nanowire Arrays via Chemical Etching: Engineering Optical Properties at the Nanoscale and Macroscale
In: ACS Applied Materials and Interfaces (2020)
ISSN: 1944-8244
DOI: 10.1021/acsami.9b21466 - , , , , , , , , :
Spatioselective Deposition of Passivating and Electrocatalytic Layers on Silicon Nanowire Arrays.
In: ACS Applied Materials and Interfaces (2020)
ISSN: 1944-8244
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Large-Scale Synthesis of Highly Uniform Silicon Nanowire Arrays Using Metal-Assisted Chemical Etching
In: Chemistry of Materials (2020), p. 9425-9434
ISSN: 0897-4756
DOI: 10.1021/acs.chemmater.0c03593
2019
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Stimuli-Responsive Behavior of PNiPAm Microgels under Interfacial Confinement
In: Langmuir (2019)
ISSN: 0743-7463
DOI: 10.1021/acs.langmuir.9b01208 - , , , , :
A Dirty Story: Improving Colloidal Monolayer Formation by Understanding the Effect of Impurities at the Air/Water Interface
In: Langmuir 35 (2019), p. 95-103
ISSN: 0743-7463
DOI: 10.1021/acs.langmuir.8b02605
2018
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Hierarchical Design of Metal Micro/Nanohole Array Films Optimizes Transparency and Haze Factor
In: Advanced Functional Materials (2018)
ISSN: 1616-301X
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Three-Dimensional Electrochemical Axial Lithography on Si Micro- and Nanowire Arrays
In: Nano Letters 18 (2018), p. 7343-7349
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Amphiphile-Induced Anisotropic Colloidal Self-Assembly
In: Langmuir 34 (2018), p. 9990-10000
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DOI: 10.1021/acs.langmuir.8b01382 - , , , , , , :
Surface Patterning with SiO2@PNiPAm Core–Shell Particles
In: ACS Omega 3 (2018), p. 12089-12098
ISSN: 2470-1343
DOI: 10.1021/acsomega.8b01985
URL: https://pubs.acs.org/doi/abs/10.1021/acsomega.8b01985
2017
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Smart Optical Composite Materials: Dispersions of Metal-Organic Framework@Superparamagnetic Microrods for Switchable Isotropic-Anisotropic Optical Properties
In: Acs Nano 11 (2017), p. 779-787
ISSN: 1936-0851
DOI: 10.1021/acsnano.6b07189 - , , , :
Interfacial arrangement and phase transitions of PNiPAm microgels with different crosslinking densities
In: Soft Matter 13 (2017), p. 8717-8727
ISSN: 1744-683X
DOI: 10.1039/c7sm01558e - , , , :
Anisotropic Self-Assembly from Isotropic Colloidal Building Blocks
In: Journal of the American Chemical Society 139 (2017), p. 17464-17473
ISSN: 0002-7863
DOI: 10.1021/jacs.7b08503
Wei Lin – Surface characterization of colloidal nanoparticles with a widely applicable toolkit
Author’s publications:
2020
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Unraveling Complexity: A Strategy for the Characterization of Anisotropic Core Multishell Nanoparticles
In: Particle & Particle Systems Characterization (2020)
ISSN: 0934-0866
DOI: 10.1002/ppsc.202000145
2019
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Suspension- and powder-based derivation of Hansen dispersibility parameters for zinc oxide quantum dots
In: Particuology 44 (2019), p. 71-79
ISSN: 1674-2001
DOI: 10.1016/j.partic.2018.05.010
2018
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Evolution of the Ligand Shell Around Small ZnO Nanoparticles During the Exchange of Acetate by Catechol: A Small Angle Scattering Study
In: ChemNanoMat 4 (2018), p. 1-9
ISSN: 2199-692X
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Simple and Reliable Method for Studying the Adsorption Behavior of Aquivion lonomers on Carbon Black Surfaces
In: Langmuir 34 (2018), p. 12324-12334
ISSN: 0743-7463
DOI: 10.1021/acs.langmuir.8b02726
2017
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Changes within the stabilizing layer of ZnO nanoparticles upon washing
In: Journal of Colloid and Interface Science 504 (2017), p. 356-362
ISSN: 0021-9797
DOI: 10.1016/j.jcis.2017.05.059 - , , , , , , , :
Influence of Tail Groups during Functionalization of ZnO Nanoparticles on Binding Enthalpies and Photoluminescence
In: Langmuir 33 (2017), p. 13581-13589
ISSN: 0743-7463
DOI: 10.1021/acs.langmuir.7b03079
2016
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Spectra library: An assumption-free in situ method to access the kinetics of catechols binding to colloidal ZnO quantum dots
In: Angewandte Chemie International Edition 55 (2016), p. 932-935
ISSN: 1433-7851
DOI: 10.1002/anie.201508252
2015
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A General Approach To Study the Thermodynamics of Ligand Adsorption to Colloidal Surfaces Demonstrated by Means of Catechols Binding to Zinc Oxide Quantum Dots
In: Chemistry of Materials 27 (2015), p. 358--369
ISSN: 0897-4756
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Simultaneous Analysis of Hydrodynamic and Optical Properties Using Analytical Ultracentrifugation Equipped with Multiwavelength Detection
In: Analytical Chemistry 87 (2015), p. 3396--3403
ISSN: 0003-2700
DOI: 10.1021/ac504649c
Timo Hensler – Fluid Dynamic Characterization of Circulating Fluidized Bed Riser Reactors
Author’s publications:
2018
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Dynamics of fine grinding in a fluidized bed opposed jet mill
In: Powder Technology 327 (2018), p. 346-357
ISSN: 0032-5910
DOI: 10.1016/j.powtec.2017.12.084 - , , , , :
Solid distribution in fluidized and fixed beds with horizontal high speed gas jets
In: Powder Technology 336 (2018), p. 57-69
ISSN: 0032-5910
DOI: 10.1016/j.powtec.2018.05.035
2017
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Horizontal secondary gas injection in fluidized beds: Solid concentration and velocity in multiphase jets
In: Powder Technology (2017)
ISSN: 0032-5910
DOI: 10.1016/j.powtec.2017.01.057
2016
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Non-invasive investigation of the cross-sectional solids distribution in CFB risers by X-ray computed tomography
In: Powder Technology 297 (2016), p. 247-258
ISSN: 0032-5910
DOI: 10.1016/j.powtec.2016.04.030
2015
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Particle tracking in fluidized beds with secondary gas injection
7th World Congress on Particle Technology, WCPT 2014
DOI: 10.1016/j.proeng.2015.01.204 - , , , , :
Particle Tracking in Fluidized Beds with Secondary Gas Injection
In: Procedia Engineering 102 (2015), p. 850-857
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Positron emission particle tracking in fluidized beds with secondary gas injection
In: Powder Technology 279 (2015), p. 113-122
ISSN: 0032-5910
DOI: 10.1016/j.powtec.2015.04.005
2014
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High-density risers as reactor system for benzene synthesis by non-oxidative dehydroaromatization of methane - fluid-dynamic investigations
11th International Conference on Fluidized Bed Technology, CFB 2014 (Beijing)
URL: https://www.scopus.com/inward/record.url?partnerID=HzOxMe3b&scp=84902668468&origin=inward
Stephanie Kloos (née Fanselow) – Production of polymer microparticles for additive manufacturing via liquid phase processes
2019
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Formation of spherical micron-sized polyamide particles for additive manufacturing via liquid-liquid phase separation
33rd International Conference of the Polymer Processing Society, PPS 2017 (Cancun, MEX, 10. December 2017 - 14. December 2017)
In: Octavio Manero, Fausto Calderas (ed.): AIP Conference Proceedings 2019
DOI: 10.1063/1.5121696 - , , , :
Production of Spherical Micron-Sized Polymer Particles for Additive Manufacturing by Liquid Phase Processes
Europe/Africa Regional Dresden Conference of the Polymer-Processing-Society (PPS) (Dresden, 27. June 2017 - 29. June 2017)
In: Proceedings of the Europe/Africa Conference Dresden 2017 Polymer Processing Society PPS, MELVILLE: 2019
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Novel process routes towards the production of spherical polymer powders for selective laser sintering
33rd International Conference of the Polymer Processing Society, PPS 2017 (Cancun, MEX, 10. December 2017 - 14. December 2017)
In: Octavio Manero, Fausto Calderas (ed.): AIP Conference Proceedings 2019
DOI: 10.1063/1.5121697
2018
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Production of spherical semi-crystalline polycarbonate microparticles for Additive Manufacturing by liquid-liquid phase separation
In: Powder Technology 335 (2018), p. 275-284
ISSN: 0032-5910
DOI: 10.1016/j.powtec.2018.05.005
2017
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New approaches towards production of polymer powders for selective laser beam melting of polymers
32nd International Conference of the Polymer Processing Society, PPS 2016
DOI: 10.1063/1.5016797
2016
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Production of spherical wax and polyolefin microparticles by melt emulsification for additive manufacturing
In: Chemical Engineering Science 141 (2016), p. 282-292
ISSN: 0009-2509
DOI: 10.1016/j.ces.2015.11.019
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Production of micron-sized polymer particles for additive manufacturing by melt emulsification
31st International Conference of the Polymer Processing Society, PPS 2015 (Jeju Island Korea, 7. June 2015 - 11. June 2015)
In: AIP Publishing LLC. (ed.): Proceedings of PPS-31 2016
DOI: 10.1063/1.4942342 - , , , , :
Herstellung und Funktionalisierung neuartiger Pulverwerkstoffe für die additive Fertigung
In: Chemie Ingenieur Technik 88 (2016)
ISSN: 0009-286X
DOI: 10.1002/cite.201650354 - , , , , :
Novel approaches for the production of polymer powders for selective laser beam melting of polymers
27th Annual International Solid Freeform Fabrication Symposium - An Additive Manufacturing Conference, SFF 2016 (Austin, Texas, 8. August 2016 - 10. August 2016)
In: Solid Freeform Fabrication 2016: Proceedings of the 26th Annual International Solid Freeform Fabrication Symposium – An Additive Manufacturing Conference 2016
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Optimized polybutylene terephthalate powders for selective laser beam melting
In: Chemical Engineering Science 156 (2016), p. 1-10
ISSN: 0009-2509
DOI: 10.1016/j.ces.2016.09.009 - , , , , , , , , :
A novel process for production of spherical PBT powders and their processing behavior during laser beam melting
31st International Conference of the Polymer Processing Society, PPS 2015 (Jeju Island Korea, 7. June 2015 - 11. June 2015)
In: 31st International Conference of the POLYMER PROCESSING SOCIETY 2016
DOI: 10.1063/1.4942343
2015
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Production of Micron-Sized particles by melt emulsification
8th International Conference for Conveying and Handling of Particulate Solids, CHoPS 2015 (Tel Aviv, 3. May 2015 - 7. May 2015)
URL: https://www.scopus.com/record/display.uri?eid=2-s2.0-84964017432&origin=inward - , , , , :
New approach towards production of optimized polymer powders for additive manufacturing
8th International Conference for Conveying and Handling of Particulate Solids, CHoPS 2015 (Tel Aviv, 3. May 2015 - 7. May 2015)
In: 8th International Conference for Conveying and Handling of Particulate Solids (CHoPS2015) 2015
DOI: 10.1080/02726351.2016.1190902 - , , , , , , :
Herstellung von Polyolefinstrahlschmelzmaterialien mittels Schmelzeemulgieren zum Einsatz in der additiven Fertigung
Neue Entwicklungen in der Additiven Fertigung (, 10. December 2015)
In: Neue Entwicklungen in der Additiven Fertigung 2015
DOI: 10.1007/978-3-662-48473-9_2
2014
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Generation of multi-material parts with alternating material layers by Simultaneous Laser Beam Melting of polymers
International Conference on Additive Technologies - ICAT 2014 (Wien, 14. October 2014 - 17. October 2014)
URL: https://www.researchgate.net/publication/274250275_Generation_of_multi-material_parts_with_alternating_material_layers_by_Simultaneous_Laser_Beam_Meltingof_polymers
Claudia Eisermann – Dispersing, stabilization and agglomeration of carbon black
2014
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Biocompatibility of submicron Bioglass® powders obtained by a top-down approach
In: Journal of Biomedical Materials Research Part B: Applied Biomaterials 102 (2014), p. 952-961
ISSN: 1552-4973
DOI: 10.1002/jbm.b.33076 - , , , :
Stabilization of carbon black particles with Cetyltrimethylammoniumbromide in aqueous media
In: Powder Technology 253 (2014), p. 338-346
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Enhancing In Vitro Bioactivity of Melt-Derived 45S5 Bioglass® by Comminution in a Stirred Media Mill
In: Journal of the American Ceramic Society 97 (2014), p. 150-156
ISSN: 0002-7820
DOI: 10.1111/jace.12615
2012
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Polymeric stabilization of fused corundum during nanogrinding in stirred media mills
In: Powder Technology 217 (2012), p. 315-324
ISSN: 0032-5910
DOI: 10.1016/j.powtec.2011.10.043
Patrick Herre – Deformation and breakage behavior of complex ceramic and metallic microparticles
2019
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Pressure induced local phase transformation in nanocrystalline tetragonal zirconia microparticles
In: Scripta Materialia 163 (2019), p. 86-90
ISSN: 1359-6462
DOI: 10.1016/j.scriptamat.2018.12.035 - , , , , , :
Aerosol synthesis of germanium nanoparticles supported by external seeding: Theoretical and experimental analysis
In: Journal of Aerosol Science 128 (2019), p. 50-61
ISSN: 0021-8502
DOI: 10.1016/j.jaerosci.2018.11.013
2017
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Deformation behavior of nanocrystalline titania particles accessed by complementary in situ electron microscopy techniques
In: Journal of the American Ceramic Society (2017), p. 1-14
ISSN: 0002-7820
DOI: 10.1111/jace.15072
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Deformation behavior of nanocrystalline titania particles accessed by complementary in situ electron microscopy techniques
In: Journal of the American Ceramic Society 100 (2017), p. 5709-5722
ISSN: 0002-7820
DOI: 10.1111/jace.15072 - , , , , , , , , , :
Ligand-assisted thickness tailoring of highly luminescent colloidal CH3NH3PbX3 (X = Br and I) perovskite nanoplatelets
In: Chemical Communications 53 (2017), p. 244-247
ISSN: 1359-7345
DOI: 10.1039/c6cc09266g - , , , , , , , , :
A novel approach for preparation and in situ tensile testing of silica glass membranes in the TEM
In: Frontiers in Materials (2017)
ISSN: 2296-8016
DOI: 10.3389/fmats.2017.00010
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Automated synthesis of quantum dot nanocrystals by hot injection: Mixing induced self-focusing
In: Chemical Engineering Journal 320 (2017), p. 232-243
ISSN: 0300-9467
DOI: 10.1016/j.cej.2017.02.154
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Characterization of stressing conditions in mills – A comprehensive research strategy based on well-characterized model particles
In: Powder Technology 305 (2017), p. 652-661
ISSN: 0032-5910
DOI: 10.1016/j.powtec.2016.10.048
2016
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Effective Ligand Engineering of the Cu2ZnSnS4 Nanocrystal Surface for Increasing Hole Transport Efficiency in Perovskite Solar Cells
In: Advanced Functional Materials 26 (2016), p. 8300-8306
ISSN: 1616-301X
DOI: 10.1002/adfm.201603441 - , , , , , , , , , , , , :
Deciphering the Role of Impurities in Methylammonium Iodide and Their Impact on the Performance of Perovskite Solar Cells
In: Advanced Materials Interfaces (2016)
ISSN: 2196-7350
DOI: 10.1002/admi.201600593 - , , , , , , , , , , :
Organometallic perovskites for optoelectronic applications (Conference Presentation)
Proceedings Volume 9919, Nanophotonic Materials XIII; 99190E (2016) (San Diego, California, 8. November 2016)
In: SPIE Nanoscience + Engineering, 2016 2016
DOI: 10.1117/12.2237101 - , , , , , , , , , , :
Industrially scalable and cost-effective Mn2+ doped ZnxCd1-xS/ZnS nanocrystals with 70% photoluminescence quantum yield, as efficient down-shifting materials in photovoltaics
In: Energy and Environmental Science 9 (2016), p. 1083-1094
ISSN: 1754-5692
DOI: 10.1039/C5EE03165F
2015
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A comprehensive study on the mechanism behind formation and depletion of Cu2ZnSnS4 (CZTS) phases
In: Crystengcomm 17 (2015), p. 6972-6984
ISSN: 1466-8033
DOI: 10.1039/c5ce00661a - , , , :
Deformation behavior of micron-sized polycrystalline gold particles studied by in situ compression experiments and frictional finite element simulation
In: Powder Technology 286 (2015), p. 706-715
ISSN: 0032-5910
DOI: 10.1016/j.powtec.2015.09.020 - , , , , , , , , , :
In situ cracking of silica beads in the SEM and TEM - Effect of particle size on structure-property correlations
In: Powder Technology 270 (2015), p. 337--347
ISSN: 0032-5910
DOI: 10.1016/j.powtec.2014.10.026 - , , , , , , :
In situ deformation and breakage of silica particles inside a SEM
7th World Congress on Particle Technology, WCPT 2014
DOI: 10.1016/j.proeng.2015.01.128 - , , , , , :
Local densification of a single micron sized silica sphere by uniaxial compression
In: Scripta Materialia 108 (2015), p. 84-87
ISSN: 1359-6462
DOI: 10.1016/j.scriptamat.2015.06.023
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2014
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Optical Analysis and Material Characterization of Nanoparticulate Oxides Synthesized via Flame Spray Pyrolysis
2014 MRS (Materials Research Society) Fall Meeting and Exhibit (Boston, 30. November 2014 - 5. December 2014)
Christian Mehringer – Aerosol synthesis and characterization of semiconducting nanoparticles from the elements Si and Ge for the application in printable electronics
2016
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Electrical properties of solution processed layers based on Ge-Si alloy nanoparticles
In: MRS Advances 1 (2016), p. 2331-2336
ISSN: 2059-8521
DOI: 10.1557/adv.2016.329
2015
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Germanium-silicon alloy and core-shell nanocrystals by gas phase synthesis
In: Nanoscale 7 (2015), p. 5186--5196
ISSN: 2040-3364
DOI: 10.1039/c4nr06318j - , , , , , :
Tunable conduction type of solution-processed germanium nanoparticle based field effect transistors and their inverter integration
In: Physical Chemistry Chemical Physics 17 (2015), p. 22106-22114
ISSN: 1463-9076
DOI: 10.1039/c5cp03321g
2014
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Gas phase synthesis of anisotropic silicon germanium hybrid nanoparticles
In: Journal of Aerosol Science 67 (2014), p. 119--130
ISSN: 0021-8502
DOI: 10.1016/j.jaerosci.2013.10.005
2012
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Application of Printable ITO/PEDOT Nanocomposites as Transparent Electrodes in Optoelectronic Devices
In: Conference on Lasers and Electro-Optics (2012), Article No.: CF3J.2.
ISSN: 2160-9020
DOI: 10.1364/CLEO_SI.2012.CF3J.2
2011
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Fabrication, charge carrier transport, and application of printable nanocomposites based on indium tin oxide nanoparticles and conducting polymer 3,4-ethylenedioxythiophene/polystyrene sulfonic acid
In: Journal of Applied Physics 110 (2011), Article No.: 104301
ISSN: 0021-8979
DOI: 10.1063/1.3658634
Martin Hartig – Multi-component model for precipitation – the case of catalyst preparation
2015
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A model-based precipitation study of copper-based catalysts
In: AIChE Journal 61 (2015), p. 2104-2116
ISSN: 1547-5905
DOI: 10.1002/aic.14810
2014
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Multi-component and multi-phase population balance model: The case of Georgeite formation as methanol catalyst precursor phase
In: Chemical Engineering Science 109 (2014), p. 158--170
ISSN: 0009-2509
DOI: 10.1016/j.ces.2014.01.026
2012
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A population balance model of quantum dot formation: Oriented growth and ripening of ZnO
In: Chemical Engineering Science (2012)
ISSN: 0009-2509
DOI: 10.1016/j.ces.2011.04.043
2009
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Structural dependent drag force and orientation prediction for small fractal aggregates
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ISSN: 0021-9797
DOI: 10.1016/j.jcis.2008.11.021
Christian Meltzer – In situ spectroscopy of self-assembly, drying, ageing and manipulation of molecular monolayers on alumina
2018
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Molecular structure of octadecylphosphonic acids during their self-assembly on α-Al2O3(0001)
In: Physical Chemistry Chemical Physics 20 (2018), p. 19382-19389
ISSN: 1463-9076
DOI: 10.1039/c8cp02391c
2017
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Functionalization of steel surfaces with organic acids: Influence on wetting and corrosion behavior
In: Applied Surface Science 404 (2017), p. 326-333
ISSN: 0169-4332
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2016
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Lubrication of Individual Microcontacts by a Self-Assembled Alkyl Phosphonic Acid Monolayer on α-Al2O3(0001)
In: Langmuir 32 (2016), p. 8298-8306
ISSN: 0743-7463
DOI: 10.1021/acs.langmuir.6b01933
2015
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Self-Assembled Monolayers Get Their Final Finish via a Quasi-Langmuir-Blodgett Transfer
In: Langmuir (2015), p. n/a
ISSN: 0743-7463
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2014
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Indentation and Self-Healing Mechanisms of a Self-Assembled Monolayer-A Combined Experimental and Modeling Study
In: Journal of the American Chemical Society 136 (2014), p. 10718--10727
ISSN: 1520-5126
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Fabrizio-Zagros Sadafi – Interface engineering for tailored silver patch coatings on colloidal particles
2018
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Anisometric engineering of particle interfaces: Multidimensional characterization and gram‐scale production
ProcessNet‐Jahrestagung und 33. DECHEMA‐Jahrestagung der Biotechnologen 2018 (Aachen, 11. September 2018 - 13. September 2018)
In: Chemie Ingenieur Technik (Special Issue: ProcessNet‐Jahrestagung und 33. DECHEMA‐Jahrestagung der Biotechnologen 2018), Weinheim: 2018
DOI: 10.1002/cite.201855147
URL: https://onlinelibrary.wiley.com/doi/abs/10.1002/cite.201855147?af=R - , , , :
On the complex role of ammonia in the electroless deposition of curved silver patches on silica nanospheres
In: Crystengcomm 20 (2018), p. 6214-6224
ISSN: 1466-8033
DOI: 10.1039/C8CE00866C
2017
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Radial Growth in 2D Revisited: The Effect of Finite Density, Binding Affinity, Reaction Rates, and Diffusion
In: Advanced Materials Interfaces 4 (2017), Article No.: 1600310
ISSN: 2196-7350
DOI: 10.1002/admi.201600310
URL: http://onlinelibrary.wiley.com/doi/10.1002/admi.201600310/full
2016
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On-Demand Coupling of Electrically Generated Excitons with Surface Plasmons via Voltage-Controlled Emission Zone Position
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2013
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Patchy particles made easy: Developing general colloidal approaches to produce anisotropic building blocks for novel functional materials
Engineering Sciences and Fundamentals 2013 - Core Programming Area at the 2013 AIChE Annual Meeting: Global Challenges for Engineering a Sustainable Future
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Christian Sauerbeck – Investigation of charged colloidal interfaces by nonlinear light scattering
2018
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2014
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Surface Charging and Interfacial Water Structure of Amphoteric Colloidal Particles
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Shedding light on the growth of gold nanoshells
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2013
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Engineering Sciences and Fundamentals 2013 - Core Programming Area at the 2013 AIChE Annual Meeting: Global Challenges for Engineering a Sustainable Future (San Francisco, 3. November 2013 - 8. November 2013)
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2012
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2012 Conference on Lasers and Electro-Optics, CLEO 2012 (San Jose, CA, 6. May 2012 - 11. May 2012)
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2011
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2010
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Probing colloidal interfaces by angle-resolved second harmonic light scattering
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2015
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Functionalization of polymer powders for SLS-processes using an atmospheric plasma jet in a fluidized bed reactor
30th International Conference of the Polymer Processing Society, PPS 2014 (Cleveland, 8. June 2014 - 12. June 2014)
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2014
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Functionalization of polymers using an atmospheric plasma jet in a fluidized bed reactor and its impact on selective laser melting processes
11th International Conference on Fluidized Bed Technology, CFB 2014 (Beijing, 14. May 2014 - 17. May 2014)
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2012
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Franziska Toni – Fabrication of customized carbon nanotubes in an entrained flow reactor by the floating catalyst method
2015
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7th World Congress on Particle Technology, WCPT 2014 (Bejing, 19. May 2014 - 22. May 2014)
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30th International Conference of the Polymer Processing Society, PPS 2014 (Cleveland,Ohio, 6. June 2014 - 12. June 2014)
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2014
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Johannes Walter – Multidimensional characterization of nanoparticles by means of analytical ultracentrifugation
2018
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ProcessNet‐Jahrestagung und 33. DECHEMA‐Jahrestagung der Biotechnologen 2018 (Aachen, 11. September 2018 - 13. September 2018)
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2017
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2016
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2014
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Carbon Nanodots: Toward a Comprehensive Understanding of Their Photoluminescence
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2012
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Protein adsorption at the electrified air-water interface: Implications on foam stability
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Tuning the molecular order of C-60 functionalized phosphonic acids
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2011
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Tuning the Molecular Order of C60 Functionalized Phosphonic Acid Monolayers
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2015
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The effects of post-processing on the surface and the optical properties of copper indium sulfide quantum dots
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2013
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Relation of Nanostructure and Recombination Dynamics in a Low-Temperature Solution-Processed CuInS2 Nanocrystalline Solar Cell
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Christine Funk – Wetting behavior and mobility of microdroplets on nanoparticle-coated single fibers
2016
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Separation of nanoparticles: Filtration and scavenging from waste incineration plants
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2014
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Astrid Günther – Atomization of superheated fluids – Influence of the flow characteristics on the spray
2016
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Temperature characteristics in a flash atomization process
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Benchmarking of Gas-Assisted Atomization Systems for Liquid Disintegration
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Simultaneous analysis of the dispersed liquid and the bulk gas phase of water sprays using Raman spectroscopy
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2013
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Effervescent atomization of polyvinylpyrrolidone solutions: Influence of liquid properties and atomizer geometry on liquid breakup and spray characteristics
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2012
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Daniel Kilian – Flame Spray Synthesis of Semiconducting Oxide Nanomaterials – Fundamental Process Characterization and Control of Product Properties
2014
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Spatially resolved flame zone classification of a flame spray nanoparticle synthesis process by combining different optical techniques
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Pulsed direct flame deposition and thermal annealing of transparent amorphous indium zinc oxide films as active layers in field effect transistors
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Classification of Different Zones in a Flame Spray Pyrolysis Process
International Workshop Nucleation and Early Stages of Particle Formation (Erlangen, 5. June 2014 - 6. June 2014) - , , , , , , :
Optical Analysis and Material Characterization of Nanoparticulate Oxides Synthesized via Flame Spray Pyrolysis
2014 MRS (Materials Research Society) Fall Meeting and Exhibit (Boston, 30. November 2014 - 5. December 2014)
2012
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Application of Printable ITO/PEDOT Nanocomposites as Transparent Electrodes in Optoelectronic Devices
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Nanotechnology 2012: Advanced Materials, CNTs, Particles, Films and Composites - 2012 NSTI Nanotechnology Conference and Expo, NSTI-Nanotech 2012 (Santa Clara, CA, 18. June 2012 - 21. June 2012)
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Gas phase temperature measurements in the liquid and particle regime of a flame spray pyrolysis process using O2-based pure rotational coherent anti-Stokes Raman scattering
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CLEO: Applications and Technology, CLEO_AT 2012 (San Jose, CA, 6. May 2012 - 11. May 2012)
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Laser Applications to Chemical, Security and Environmental Analysis, LACSEA 2012 (San Diego, CA, 29. January 2012 - 1. February 2012)
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2011
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Fabrication, charge carrier transport, and application of printable nanocomposites based on indium tin oxide nanoparticles and conducting polymer 3,4-ethylenedioxythiophene/polystyrene sulfonic acid
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Jonas Paul – Mechanical behaviour of spherical microparticles
2017
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2016
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Lubrication of Individual Microcontacts by a Self-Assembled Alkyl Phosphonic Acid Monolayer on α-Al2O3(0001)
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2015
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Deformation behavior of micron-sized polycrystalline gold particles studied by in situ compression experiments and frictional finite element simulation
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In situ cracking of silica beads in the SEM and TEM - Effect of particle size on structure-property correlations
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7th World Congress on Particle Technology, WCPT 2014
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Mechanical particle properties - design, characterization and application
8th International Conference for Conveying and Handling of Particulate Solids, CHoPS 2015
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2014
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Indentation and Self-Healing Mechanisms of a Self-Assembled Monolayer-A Combined Experimental and Modeling Study
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Correlation of Enhanced Strength and Internal Structure for Heat-Treated Submicron Stöber Silica Particles
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2012
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Ulrike Weichsel – Study of heterogeneous nucleation in the crystallization of proteins
2017
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Enhanced Crystallization of Lysozyme Mediated by the Aggregation of Inorganic Seed Particles
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Monitoring of Flow-Induced Aggregation and Conformational Change of Monoclonal Antibodies
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2015
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2014
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Mixed Layers of β-Lactoglobulin and SDS at Air-Water Interfaces with Tunable Intermolecular Interactions
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2013
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Transmission electron microscopy and time resolved optical spectroscopy study of the electronic and structural interactions of ZnO nanorods with bovine serum albumin
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Huixin Bao – Facile Processes for the Synthesis of Patchy Particles
2017
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Heterogeneous nucleation and surface conformal growth of silver nanocoatings on colloidal silica in a continuous flow static T-mixer
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2014
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Facile colloidal coating of polystyrene nanospheres with tunable gold dendritic patches
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2013
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Patchy particles made easy: Developing general colloidal approaches to produce anisotropic building blocks for novel functional materials
Engineering Sciences and Fundamentals 2013 - Core Programming Area at the 2013 AIChE Annual Meeting: Global Challenges for Engineering a Sustainable Future
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2012
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Silver-assisted colloidal synthesis of gold patchy particles with tunable patchiness
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Silver-Assisted Colloidal Synthesis of Stable, Plasmon Resonant Gold Patches on Silica Nanospheres
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2011
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One-pot colloidal synthesis of plasmonic patchy particles
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Mesoporous Organosilicas With Large Cage-Like Pores for High Efficiency Immobilization of Enzymes
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2010
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Facile route to morphologically tailored silver patches on colloidal particles
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Christina Blümel (née Engelhardt) – Characterization of dry coating for the production of tailored composite particles
2015
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Increasing flowability and bulk density of PE-HD powders by a dry particle coating process and impact on LBM processes
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Rounding of irregular polymer particles in a downer reactor
7th World Congress on Particle Technology, WCPT 2014 (Bejing, 19. May 2014 - 22. May 2014)
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A novel process chain for the production of spherical sls polymer powders with good flowability
7th World Congress on Particle Technology, WCPT 2014 (Bejing, 19. May 2014 - 22. May 2014)
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A novel process route for the production of spherical SLS polymer powders
30th International Conference of the Polymer Processing Society, PPS 2014 (Cleveland,Ohio, 6. June 2014 - 12. June 2014)
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2014
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Numerical study of the packing density of fine powders by means of the Discrete Element Method
85th Annual Meeting of the International Association of Applied Mathematics and Mechanics – GAMM 2014 (, 10. March 2014 - 14. March 2014) - , , , , , , :
Dry particle coating of polymer particles for tailor-made product properties
29th International Conference of the Polymer Processing Society, PPS 2013 (Nuremberg, 15. July 2013 - 19. July 2013)
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Aluminum integral foam castings with microcellular cores by nano-functionalization
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Attractive particle interaction forces and packing density of fine glass powders
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A novel process route for the production of spherical LBM polymer powders with small size and good flowability
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2013
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Dry particle coating for tailor-made product properties: Coating and decoating processes
Particle Technology Forum 2013 - Core Programming Area at the 2013 AIChE Annual Meeting: Global Challenges for Engineering a Sustainable Future (San Francisco, 3. November 2013 - 8. November 2013)
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Amir Gheisi – Stability and Transformation of Particulate MgO-based Nanocomposites
2015
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Thin water films and magnesium hydroxide fiber growth
In: RSC Advances 5 (2015), p. 82564-82569
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2014
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O2 adsorption dependent photoluminescence emission from metal oxide nanoparticles
In: Physical Chemistry Chemical Physics 16 (2014), p. 23922-23929
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Spontaneous Growth of Magnesium Hydroxide Fibers at Ambient Conditions
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2012
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Bulk and Surface Excitons in Alloyed and Phase-Separated ZnO-MgO Particulate Systems
In: ACS Applied Materials and Interfaces 4 (2012), p. 2490-2497
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Mathias Hanisch – Synthesis and Characterization of Anisotropic Noble Metal Nanostructures for Applications in Nanotechnology
2015
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In situ deformation and breakage of silica particles inside a SEM
7th World Congress on Particle Technology, WCPT 2014
DOI: 10.1016/j.proeng.2015.01.128
2014
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Correlation of Enhanced Strength and Internal Structure for Heat-Treated Submicron Stöber Silica Particles
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2013
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Investigation of interfacial processes leading to anisotropic silver nanostructures on 2D monolayers of silica spheres
Engineering Sciences and Fundamentals 2013 - Core Programming Area at the 2013 AIChE Annual Meeting: Global Challenges for Engineering a Sustainable Future (San Francisco, 3. November 2013 - 8. November 2013)
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Synthesis of silver nanoparticles in melts of amphiphilic polyesters
In: Nanotechnology 24 (2013), p. 115604
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2012
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Synthesis of silver nanoparticle necklaces without explicit addition of reducing or templating agents
In: Chemical Communications 48 (2012), p. 4287-4289
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Martin Klaumünzer – Oriented aggregation and redox-active surface functionalization of precipitated metal oxides and metal hydroxides
2015
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Surface Modification of ZnO Nanorods with Hamilton Receptors
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2014
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ZnO superstructures via oriented aggregation initiated in a block copolymer melt
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Surface functionalization and electronic interactions of ZnO nanorods with a porphyrin derivative
In: ACS Applied Materials and Interfaces 6 (2014), p. 6724-6730
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Self-alignment of zinc oxide nanorods into a 3D-smectic phase
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2013
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Synthesis of stable and surface functionalized nanoparticles in an amphiphilic block copolymer melt
Nanotechnology 2013: Advanced Materials, CNTs, Particles, Films and Composites - 2013 NSTI Nanotechnology Conference and Expo, NSTI-Nanotech 2013 (Washington, DC, 12. May 2013 - 16. May 2013)
In: Technical Proceedings of the 2013 NSTI Nanotechnology Conference and Expo, NSTI-Nanotech 2013 2013
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Precipitation of In(OH)3 and InOOH nanocrystals for the use in nanoelectronics: Phase transition behavior and oriented aggregation
Nanotechnology 2013: Advanced Materials, CNTs, Particles, Films and Composites - 2013 NSTI Nanotechnology Conference and Expo, NSTI-Nanotech 2013 (Washington, DC)
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An effective dialysis method for surface funtionalization of nanoparticles in liquid phase - Sample: Porphyrine derivatives @ ZnO-Nanorods
Nanotechnology 2013: Advanced Materials, CNTs, Particles, Films and Composites - 2013 NSTI Nanotechnology Conference and Expo, NSTI-Nanotech 2013 (Washington, DC)
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Transmission electron microscopy and time resolved optical spectroscopy study of the electronic and structural interactions of ZnO nanorods with bovine serum albumin
In: Journal of Physical Chemistry B 117 (2013), p. 9683-9689
ISSN: 1520-6106
DOI: 10.1021/jp405181u
2012
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Impact of oxygen plasma treatment on the device performance of zinc oxide nanoparticle based thin-film transistors
In: ACS Applied Materials and Interfaces 4 (2012), p. 1693–1696
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Phase Transition Behavior and Oriented Aggregation During Precipitation of In(OH)3 and InOOH Nanocrystals
In: Journal of Physical Chemistry C 116 (2012), p. 24529--24537
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DOI: 10.1021/jp305858n
2011
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Morphological impact of zinc oxide layers on the device performance in thin-film transistors
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Nanogap-controllable self-assembly of gold nanoparticles using nanotrench template
2011 16th International Solid-State Sensors, Actuators and Microsystems Conference, TRANSDUCERS'11 (Beijing, 5. June 2011 - 9. June 2011)
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Surface functionalization of ZnO nanorods with C60 derivatives carrying phosphonic acid functionalities
In: Journal of Physical Chemistry C 115 (2011), p. 5561-5565
ISSN: 1932-7447
DOI: 10.1021/jp112079u
2010
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Detailed Analysis of the Growth Kinetics of ZnO Nanorods in Methanol
In: Journal of Physical Chemistry C 114 (2010), p. 6243--6249
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Stefan Romeis – From single particle compression testing to chemical influences of the solvent on wet grinding
2016
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Prallzerkleinerung in Fließbettgegenstrahlmühlen: Vom Einzelkorn zur Mühle
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Mechanochemical aspects in wet stirred media milling
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Optimized polybutylene terephthalate powders for selective laser beam melting
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Polarized Raman scattering and SEM combined full characterization of self-assembled nematic thin films
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From evaporation-induced self-assembly to shear-induced alignment
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Noble-Metal-Free Photocatalytic Hydrogen Evolution Activity: The Impact of Ball Milling Anatase Nanopowders with TiH2
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2015
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Mechanically induced phase transformation of zinc sulfide
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Deformation behavior of micron-sized polycrystalline gold particles studied by in situ compression experiments and frictional finite element simulation
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In situ cracking of silica beads in the SEM and TEM - Effect of particle size on structure-property correlations
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Top-down processing of submicron 45S5 Bioglass® for enhanced in vitro bioactivity and biocompatibility
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Top-down processing of submicron 45S5 Bioglass (R) for enhanced in vitro bioactivity and biocompatibility
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In situ deformation and breakage of silica particles inside a SEM
7th World Congress on Particle Technology, WCPT 2014
DOI: 10.1016/j.proeng.2015.01.128 - , , , , , :
Local densification of a single micron sized silica sphere by uniaxial compression
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Mechanical particle properties - design, characterization and application
8th International Conference for Conveying and Handling of Particulate Solids, CHoPS 2015
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Formation of nanoemulsions by stirred media milling
7th World Congress on Particle Technology, WCPT 2014 (Bejing, 19. May 2014 - 22. May 2014)
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2014
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Biocompatibility of submicron Bioglass® powders obtained by a top-down approach
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Cobalt-Releasing 1393 Bioactive Glass-Derived Scaffolds for Bone Tissue Engineering Applications
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A review of models for single particle compression and their application to silica microspheres
In: Advanced Powder Technology 25 (2014), p. 136-153
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Enhancing In Vitro Bioactivity of Melt-Derived 45S5 Bioglass® by Comminution in a Stirred Media Mill
In: Journal of the American Ceramic Society 97 (2014), p. 150-156
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Correlation of Enhanced Strength and Internal Structure for Heat-Treated Submicron Stöber Silica Particles
In: Particle & Particle Systems Characterization 31 (2014), p. 664--674
ISSN: 0934-0866
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2013
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In vitro reactivity of Cu doped 45S5 Bioglass® derived scaffolds for bone tissue engineering
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Formation of nanoemulsions in stirred media mills
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2012
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A novel apparatus for in situ compression of submicron structures and particles in a high resolution SEM
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2011
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Influence of process parameters on breakage kinetics and grinding limit at the nanoscale
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2010
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Nanoparticle production with stirred-media mills: Opportunities and limits
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Timo Strer – Investigation of the influence of multi-nozzle arrangements on the flow state in fluidized beds
2015
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Particle tracking in fluidized beds with secondary gas injection
7th World Congress on Particle Technology, WCPT 2014
DOI: 10.1016/j.proeng.2015.01.204 - , , , , :
Particle Tracking in Fluidized Beds with Secondary Gas Injection
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Positron emission particle tracking in fluidized beds with secondary gas injection
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Kathrin Engelhardt – Protein adsorption at the water-air interface: Influence of molecular structure on foam stability
2015
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Carboxylate Ion Pairing with Alkali-Metal Ions for β-Lactoglobulin and Its Role on Aggregation and Interfacial Adsorption
In: Journal of Physical Chemistry B 119 (2015), p. 5505-5517
ISSN: 1520-6106
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2014
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Vibrational sum-frequency generation at protein modified air–water interfaces: Effects of molecular structure and surface charging
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Mixed Layers of β-Lactoglobulin and SDS at Air-Water Interfaces with Tunable Intermolecular Interactions
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ISSN: 1520-6106
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2013
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Spectroscopy of Electrified Interfaces with Broadband Sum Frequency Generation: From Electrocatalysis to Protein Foams
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Protein adsorption at the electrified air-water interface: Effects on foam stability
Engineering Sciences and Fundamentals 2013 - Core Programming Area at the 2013 AIChE Annual Meeting: Global Challenges for Engineering a Sustainable Future (San Francisco, CA, 3. November 2013 - 8. November 2013)
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pH effects on the molecular structure of β-lactoglobulin modified air-water interfaces and its impact on foam rheology
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DOI: 10.1021/la402729g
2012
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Protein adsorption at the electrified air-water interface: Implications on foam stability
In: ACS National Meeting Book of Abstracts 244 (2012), Article No.: 562-COLL
ISSN: 0065-7727
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Protein adsorption at the electrified air-water interface: Implications on foam stability
In: Langmuir 28 (2012), p. 7780-7787
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2011
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Protein adsorption at the air-water interface studied by surface vibrational spectroscopy
Engineering Sciences and Fundamentals - Core Programming Topic at the 2011 AIChE Annual Meeting (Minneapolis, MN, 16. October 2011 - 21. October 2011)
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Stefan Schäfer – Arrangement and alignment of zinc oxide nanorods into thin layers for electronic components
2014
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Self-alignment of zinc oxide nanorods into a 3D-smectic phase
In: Thin Solid Films 562 (2014), p. 659--667
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2011
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Experimental and Theoretical Studies of the Colloidal Stability of Nanoparticles−A General Interpretation Based on Stability Maps
In: Acs Nano 5 (2011), p. 4658-4669
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2010
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Stabilization mechanism of ZnO quantum dots
Nanotechnology 2010: Advanced Materials, CNTs, Particles, Films and Composites - 2010 NSTI Nanotechnology Conference and Expo, NSTI-Nanotech 2010 (Anaheim, CA, 21. June 2010 - 24. June 2010)
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Influence of annealing temperature and measurement ambient on TFTs based on gas phase synthesized ZnO nanoparticles
In: Microelectronic Engineering 87 (2010), p. 2312-2316
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Henning Förster – Synthesis and coating of metallic nanoparticles in the gas phase
2012
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Experimental study of metal nanoparticle synthesis by an arc evaporation/condensation process
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Sintering kinetics and mechanism of vitreous nanoparticles
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2006
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Theoretical and experimental investigations on sintering kinetics of silica nanoparticles
2006 AIChE Spring National Meeting - 5th World Congress on Particle Technology (Orlando, FL, 24. April 2006 - 28. April 2006)
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Mahdi Mahajeri – Structure formation and conductivity of nanoparticulate ITO layers
List on CRIS
Robert Richter – Characterization of high-density flow structures between homogeneous and heterogeneous fluid-solid-systems
Armin Rumpel – Investigations on the molecular order at interfaces using a newly developed sum frequency spectrometer
2013
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Spectroscopy of Electrified Interfaces with Broadband Sum Frequency Generation: From Electrocatalysis to Protein Foams
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2012
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Protein adsorption at the electrified air-water interface: Implications on foam stability
In: ACS National Meeting Book of Abstracts 244 (2012), Article No.: 562-COLL
ISSN: 0065-7727
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Protein adsorption at the electrified air-water interface: Implications on foam stability
In: Langmuir 28 (2012), p. 7780-7787
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Tuning the molecular order of C-60 functionalized phosphonic acids
In: ACS National Meeting Book of Abstracts 244 (2012)
ISSN: 0065-7727
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2011
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Protein adsorption at the air-water interface studied by surface vibrational spectroscopy
Engineering Sciences and Fundamentals - Core Programming Topic at the 2011 AIChE Annual Meeting (Minneapolis, MN, 16. October 2011 - 21. October 2011)
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Molecular order of mixed self-assembled monolayers studied by surface vibrational spectroscopy
Materials Engineering and Sciences Division - Core Programming Topic at the 2011 AIChE Annual Meeting
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Tuning the Molecular Order of C60 Functionalized Phosphonic Acid Monolayers
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ISSN: 0743-7463
DOI: 10.1021/la203916h
URL: http://pubs.acs.org/doi/abs/10.1021/la203916h?prevSearch=%255BAllField%253A%2B%255BAllField%253A%2BTuning%2Bthe%2BMolecular%2BOrder%2Bof%2BC60%2BFunctionalized%2BPhosphonic%2BAcid%2BMonolayers%255D%255D&searchHistoryKey=
2010
- , , , , , , :
The morphology of integrated self-assembled monolayers and their impact on devices – A computational and experimental approach
In: Organic Electronics 11 (2010), p. 1476-1482
ISSN: 1566-1199
DOI: 10.1016/j.orgel.2010.05.009
URL: http://www.sciencedirect.com/science/article/pii/S1566119910001692
Doris Segets – Fundamental Aspects during the Processing of Semiconductor Nanoparticles
2013
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Quantitative evaluation of size selective precipitation of Mn-doped ZnS quantum dots by size distributions calculated from UV/Vis absorbance spectra
In: Journal of Nanoparticle Research 15 (2013), p. 1486
ISSN: 1388-0764
DOI: 10.1007/s11051-013-1486-8 - , , , , , , :
Synthesis of silver nanoparticles in melts of amphiphilic polyesters
In: Nanotechnology 24 (2013), p. 115604
ISSN: 1361-6528
DOI: 10.1088/0957-4484/24/11/115604
2012
- , , , , :
Tuning the size and the optical properties of ZnO mesocrystals synthesized under solvothermal conditions
In: Nanoscale 4 (2012), p. 864-873
ISSN: 2040-3364
DOI: 10.1039/c1nr11226k - , , , :
A population balance model of quantum dot formation: Oriented growth and ripening of ZnO
In: Chemical Engineering Science (2012)
ISSN: 0009-2509
DOI: 10.1016/j.ces.2011.04.043 - , , , , , , :
Determination of the quantum dot band gap dependence on particle size from optical absorbance and transmission electron microscopy measurements
In: Acs Nano 6 (2012), p. 9021-9032
ISSN: 1936-0851
DOI: 10.1021/nn303130d
2011
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Shape Transformation Mechanism of Silver Nanorods in Aqueous Solution
In: Small 7 (2011), p. 147--156
ISSN: 1613-6829
DOI: 10.1002/smll.201001600 - , , , , , , :
Experimental and Theoretical Studies of the Colloidal Stability of Nanoparticles−A General Interpretation Based on Stability Maps
In: Acs Nano 5 (2011), p. 4658-4669
ISSN: 1936-0851
DOI: 10.1021/nn200465b
2010
- , , , :
Optimum between purification and colloidal stability of ZnO nanoparticles
In: Advanced Powder Technology 21 (2010), p. 41--49
ISSN: 0921-8831
DOI: 10.1016/j.apt.2009.10.005 - , , , :
Stabilization mechanism of ZnO quantum dots
Nanotechnology 2010: Advanced Materials, CNTs, Particles, Films and Composites - 2010 NSTI Nanotechnology Conference and Expo, NSTI-Nanotech 2010 (Anaheim, CA, 21. June 2010 - 24. June 2010)
URL: https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=78049424333&origin=inward - , , :
Early stages of particle formation by in-situ UV-vis and HRS
Nanotechnology 2010: Advanced Materials, CNTs, Particles, Films and Composites - 2010 NSTI Nanotechnology Conference and Expo, NSTI-Nanotech 2010 (Anaheim, CA, 21. June 2010 - 24. June 2010)
In: Nano Science and Technology Institute (ed.): technical proceedings of the 2010 NSTI Nanotechnology Conference and Expo, Abingdon: 2010
URL: https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=78049446954&origin=inward - , , , , , :
Ageing mechanism of gold and silver nanorods in aqueous solution
Nanotechnology 2010: Advanced Materials, CNTs, Particles, Films and Composites - 2010 NSTI Nanotechnology Conference and Expo, NSTI-Nanotech 2010 (Anaheim, CA)
URL: https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=78049416470&origin=inward
2009
- , , , , :
Analysis of optical absorbance spectra for the determination of ZnO nanoparticle size distribution, solubility, and surface energy
In: Acs Nano 3 (2009), p. 1703-1710
ISSN: 1936-0851
DOI: 10.1021/nn900223b - , , , :
Real-Time Monitoring of the Nucleation and Growth of ZnO Nanoparticles Using an Optical Hyper-Rayleigh Scattering Method
In: Journal of Physical Chemistry C 113 (2009), p. 11995--12001
ISSN: 1932-7447
DOI: 10.1021/jp9009965
2008
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Size and shape engineering of ZnO nanoparticles
Conference: 2008 AIChE Annual Meeting (Philadelphia, 16. November 2008 - 21. November 2008)
In: 2008 AIChE Annual Meeting 2008
URL: http://www.scopus.com/inward/record.url?eid=2-s2.0-79952206733&partnerID=MN8TOARS
Nicolas Siedl – Synthesis and processing of metal oxide nanoparticle ensembles: impact on charge carrier generation
2014
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Photoluminescence quenching in compressed MgO nanoparticle systems
In: Physical Chemistry Chemical Physics 16 (2014), p. 8339-8345
ISSN: 1463-9076
DOI: 10.1039/c3cp54582b
2013
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On the entangled growth of NaTaO3 cubes and Na2Ti3O7 wires in sodium hydroxide solution
In: Chemistry - A European Journal 19 (2013), p. 10235-10243
ISSN: 0947-6539
DOI: 10.1002/chem.201204281 - , , :
Metal oxide particle networks from powder mixtures: Generation of functional heterojunctions via surface charge induced heteroaggregation
246th National Meeting of the American-Chemical-Society (ACS) (Indianapolis, 8. September 2013 - 12. September 2013)
In: ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, Volume: 246 2013 - , , :
First combined electron paramagnetic resonance and FT-IR spectroscopic evidence for reversible O2 adsorption on In2O3-x nanoparticles
In: Journal of Physical Chemistry C 117 (2013), p. 20722-20729
ISSN: 1932-7447
DOI: 10.1021/jp4069834 - , , :
Synthesis and Aggregation of In2O3 Nanoparticles: Impact of Process Parameters on Stoichiometry Changes and Optical Properties
In: Langmuir 29 (2013), p. 6077-6083
ISSN: 0743-7463
DOI: 10.1021/la400750d
2012
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Particle networks from powder mixtures: Generation of TiO2-SnO2 heterojunctions via surface charge-induced heteroaggregation
In: Journal of Physical Chemistry C 116 (2012), p. 22967-22973
ISSN: 1932-7447
DOI: 10.1021/jp307737s - , , , , :
Exciton Formation at Solid-Solid Interfaces: a systematic experimental and ab initio Study on compressed MgO Nanopowders
In: Journal of Physical Chemistry C (2012), Article No.: 120404111326000
ISSN: 1932-7447
DOI: 10.1021/jp3015222 - , , , , :
Surface exciton separation in photoexcited MgO nanocube powders
In: Nanoscale 4 (2012), p. 7494-7500
ISSN: 2040-3364
DOI: 10.1039/c2nr31844j
2011
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Optical Properties of Nanocrystal Interfaces in Compressed MgO Nanopowders
In: ACS nano 5 (2011), p. 3003-3009
ISSN: 1936-0851
DOI: 10.1021/nn200062d
2009
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Functional Interfaces in Pure and Blended Oxide Nanoparticle Networks: Recombination versus Separation of Photogenerated Charges
In: Journal of Physical Chemistry C 113 (2009), p. 15792-15795
ISSN: 1932-7447
DOI: 10.1021/jp906368f
Richard Wagner (née Körmer) – Gas Phase Synthesis of Silicon Nanoparticles for Application in Printable Electronics
2014
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Gas phase synthesis of anisotropic silicon germanium hybrid nanoparticles
In: Journal of Aerosol Science 67 (2014), p. 119--130
ISSN: 0021-8502
DOI: 10.1016/j.jaerosci.2013.10.005
For publications listed under Richard Körmer see here
Christian Binder – Settling of Fractal Aggregates in Viscous Media
Benedikt Schürer – Application of second harmonic scattering for the characterisation of colloidal interfaces
List on CRIS
Andreas Sternig – Functionalization and immobilization of MgO nanocubes
2012
- , , , , :
Exciton Formation at Solid-Solid Interfaces: a systematic experimental and ab initio Study on compressed MgO Nanopowders
In: Journal of Physical Chemistry C (2012), Article No.: 120404111326000
ISSN: 1932-7447
DOI: 10.1021/jp3015222 - , , , , :
Surface exciton separation in photoexcited MgO nanocube powders
In: Nanoscale 4 (2012), p. 7494-7500
ISSN: 2040-3364
DOI: 10.1039/c2nr31844j - , , , , , , , :
Bulk and Surface Excitons in Alloyed and Phase-Separated ZnO-MgO Particulate Systems
In: ACS Applied Materials and Interfaces 4 (2012), p. 2490-2497
ISSN: 1944-8244
DOI: 10.1021/am300184b
2011
- , , , , , , :
Optical Properties of Nanocrystal Interfaces in Compressed MgO Nanopowders
In: ACS nano 5 (2011), p. 3003-3009
ISSN: 1936-0851
DOI: 10.1021/nn200062d - , , , , :
Delamination and Dissolution of Titanate Nanowires: A Combined Structure and in Situ Second Harmonic Generation Study
In: Journal of Physical Chemistry C 115 (2011), p. 12381--12387
ISSN: 1932-7447
DOI: 10.1021/jp203709a - , , , , , :
Phase separation at the nanoscale: Structural properties of BaO segregates on MgO-based nanoparticles
In: Journal of Physical Chemistry C 115 (2011), p. 15853-15861
ISSN: 1932-7447
DOI: 10.1021/jp204043g
2010
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Solar Light and Dopant-Induced Recombination Effects: Photoactive Nitrogen in TiO2 as a Case Study
In: Journal of Physical Chemistry C 114 (2010), p. 18067-18072
ISSN: 1932-7447
DOI: 10.1021/jp105426t - , , , , :
Zinc oxide scaffolds on MgO nanocubes
In: Nanotechnology 21 (2010), Article No.: 355603
ISSN: 0957-4484
DOI: 10.1088/0957-4484/21/35/355603
Sonja Wolfrum (née Simon) – Physical degradation of proteins in well-defined flow fields
List on CRIS
Catharina Knieke – Fracture at the Nanoscale and the Limit of Grinding
List on CRIS
Markus Rossmeissl – Atomization of superheated liquids: design of process and spray
Johannes Gradl – Experimental and theoretical investigations of the formation kinetics of diffusion- and reaction-limited systems using the example of nanoparticle precipitation of barium sulfate and zinc oxide
Segets, D., Hartig, M.A.J., Gradl, J., Peukert, W.
A population balance model of quantum dot formation: Oriented growth and ripening of ZnO
(2012) Chemical Engineering Science, 70, pp. 4-13.
DOI: 10.1016/j.ces.2011.04.043 Segets, D., Gradl, J., Klupp Taylor, R.N., Vassilev, V., Peukert, W.
Analysis of optical absorbance spectra for the determination of ZnO nanoparticle size distribution, solubility, and surface energy
(2009) ACS Nano, 3 (7), pp. 1703-1710.
DOI: 10.1021/nn900223b Segets, D., Martinez Tomalino, L., Gradl, J., Peukert, W.
Real-time monitoring of the nucleation and growth of zno nanoparticles using an optical hyper-rayleigh scattering method
(2009) Journal of Physical Chemistry C, 113 (28), pp. 11995-12001 Add to Citavi project by ISBN.
DOI: 10.1021/jp9009965 Gradl, J., Peukert, W.
Simultaneous 3D observation of different kinetic subprocesses for precipitation in a T-mixer
(2009) Chemical Engineering Science, 64 (4), pp. 709-720.
DOI: 10.1016/j.ces.2008.08.023 Schwertfirm, F., Gradl, J., Schwarzer, H.C., Peukert, W., Manhart, M.
The low Reynolds number turbulent flow and mixing in a confined impinging jet reactor
(2007) International Journal of Heat and Fluid Flow, 28 (6), pp. 1429-1442.
DOI: 10.1016/j.ijheatfluidflow.2007.04.019 Gradl, J., Peukert, W.
Experimental and numerical investigations of the influence of fluid dynamics on the precipitation of nanoscaled particles
(2007) 2007 NSTI Nanotechnology Conference and Trade Show – NSTI Nanotech 2007, Technical Proceedings, 4, pp. 305-308. Gradl, J., Schwarzer, H.-C., Peukert, W.
Electrostatic and steric stabilization of precipitated nanoscaled barium sulphate
(2006) AIChE Annual Meeting, Conference Proceedings, 6 p. Gradl, J., Schwarzer, H.-C., Schwertfirm, F., Manhart, M., Peukert, W.
Predictive simulation of nanoparticles-precipitation in a T-mixer by coupling direct numerical simulation with population balance equations
(2006) AIChE Annual Meeting, Conference Proceedings, 10 p. Schwertfirm, F., Manhart, M., Gradl, J., Peukert, W., Christoph-Schwarzer, H.
Numerical and experimental investigation of the turbulent flow and mixing in a static T-mixer
(2006) Proceedings of ASME Fluids Engineering Division Summer Meeting 2006, FEDSM2006, 1 SYPMOSIA, pp. 1101-1110. Schwertfirm, F., Manhart, M., Gradl, J., Peukert, W., Christoph-Schwarzer, H.
Numerical and experimental investigation of the turbulent flow and mixing in a static T-mixer
(2006) 2006 ASME Joint U.S.-European Fluids Engineering Summer Meeting, FEDSM 2006, 2006, 10 p. Gradl, J., Schwertfirm, F., Schwarzer, H.-C., Schmid, H.-J., Manhart, M., Peukert, W.
Nanoparticle precipitation in a T-mixer: Coupling experimentaland numerical investigations of the fluid dynamics with the solid formation processes
(2006) Proceedings of ASME Fluids Engineering Division Summer Meeting 2006, FEDSM2006, 1 SYPMOSIA, pp. 1063-1070. Gradl, J., Schwertfirm, F., Schwarzer, H.-C., Schmid, H.-J., Manhart, M., Peukert, W.
Nanoparticle precipitation in a T-mixer: Coupling experimental and numerical investigations of the fluid dynamics with the solid formation processes
(2006) 2006 ASME Joint U.S.-European Fluids Engineering Summer Meeting, FEDSM 2006, 2006, 8 p. Altin, E., Gradl, J., Peukert, W.
First studies on the rheological behavior of suspensions in ionic liquids
(2006) Chemical Engineering and Technology, 29 (11), pp. 1347-1354.
DOI: 10.1002/ceat.200600135 Gradl, J., Schwarzer, H.-C., Schwertfirm, F., Manhart, M., Peukert, W.
Precipitation of nanoparticles in a T-mixer: Coupling the particle population dynamics with hydrodynamics through direct numerical simulation
(2006) Chemical Engineering and Processing: Process Intensification, 45 (10), pp. 908-916.
DOI: 10.1016/j.cep.2005.11.012 Gradl, J., Schwertfirm, F., Schwarzer, H.-C., Manhart, M., Peukert, W.
Precipitation of nanoparticles: A coupled LIF / PIV, DNS and PBE approach for prediction of the particle size distribution (PSD)
(2005) VDI Berichte, (1901 II), art. no. D-6, pp. 799-804.
Matthias Meier – Development of predictive tools for the characterisation of milling behaviour of pharmaceutical powders
Generally applicable breakage functions derived from single particle comminution data
(2009) Powder Technology, 194 (1-2), pp. 33-41.
DOI: 10.1016/j.powtec.2009.03.018 Meier, M., John, E., Wieckhusen, D., Wirth, W., Peukert, W.
Influence of mechanical properties on impact fracture: Prediction of the milling behaviour of pharmaceutical powders by nanoindentation
(2009) Powder Technology, 188 (3), pp. 301-313.
DOI: 10.1016/j.powtec.2008.05.009 Meier, M., John, E., Wieckhusen, D., Wirth, W., Peukert, W.
Characterization of the grinding behaviour in a single particle impact device: Studies on pharmaceutical powders
(2008) European Journal of Pharmaceutical Sciences, 34 (1), pp. 45-55.
DOI: 10.1016/j.ejps.2008.02.120