Nanoparticles (NPs) have been widely applied in fields as diverse as energy conversion, photovoltaics, environment remediation, and human health. However, the adsorption and trapping of NPs interfaces is still poorly understood, and few studies have characterized the kinetics quantitatively. In many applications, such as drug delivery, understanding NP interactions at an interface is essential to determine and control adsorption onto targeted areas. Therapeutic NPs are especially interesting because their structures involve somewhat hydrophilic surface coronas, to prevent protein adsorption, and much more hydrophobic core phases. We initiated this study after observing aggregates of nanoparticles in dispersions where there had been exposure...
Using dissipative particle dynamics (DPD), I model the interfacial adsorption and self-assembly of p...
Liquid crystalline cubic phase nanoparticles (known as Cubosome), based on glycerol monooleate and s...
The effect of the polymer chain topology structure on the adsorption behavior in the polymer-nanopar...
Nanoparticles (NPs) adsorption can add functionality (e.g., catalytic, optical, rheological) to flui...
Owing to their many outstanding features, such as small size, large surface area, and cell penetrati...
Protein coronas are known to alter the physicochemical properties, colloidal stability, and biologic...
We present a study of static and dynamic interfacial properties of self-assembled polyelectrolyte co...
In this article, the adsorption of latex core-responsive polymer-shell nanoparticles at the air-wate...
Elucidating the mechanisms responsible for spontaneous adsorption of nanoparticles (NPs) at interfac...
International audienceSelf-assembly of core-shell nanoparticles (NPs) at liquid-liquid interfaces is...
The self-assembly of polymer-based surfactants and nanoparticles on fluid–fluid interfaces is centra...
Elucidating the mechanisms responsible for spontaneous adsorption of nanoparticles (NPs) at interfac...
Adsorption-driven self-assembly of nanoparticles at fluid interfaces is a promising bottom-up approa...
Solid micron- and nano- particles have been extensively used to stabilize dispersions such Pickering...
The dynamic and static properties of the interfacial region between polymer and nanoparticles have w...
Using dissipative particle dynamics (DPD), I model the interfacial adsorption and self-assembly of p...
Liquid crystalline cubic phase nanoparticles (known as Cubosome), based on glycerol monooleate and s...
The effect of the polymer chain topology structure on the adsorption behavior in the polymer-nanopar...
Nanoparticles (NPs) adsorption can add functionality (e.g., catalytic, optical, rheological) to flui...
Owing to their many outstanding features, such as small size, large surface area, and cell penetrati...
Protein coronas are known to alter the physicochemical properties, colloidal stability, and biologic...
We present a study of static and dynamic interfacial properties of self-assembled polyelectrolyte co...
In this article, the adsorption of latex core-responsive polymer-shell nanoparticles at the air-wate...
Elucidating the mechanisms responsible for spontaneous adsorption of nanoparticles (NPs) at interfac...
International audienceSelf-assembly of core-shell nanoparticles (NPs) at liquid-liquid interfaces is...
The self-assembly of polymer-based surfactants and nanoparticles on fluid–fluid interfaces is centra...
Elucidating the mechanisms responsible for spontaneous adsorption of nanoparticles (NPs) at interfac...
Adsorption-driven self-assembly of nanoparticles at fluid interfaces is a promising bottom-up approa...
Solid micron- and nano- particles have been extensively used to stabilize dispersions such Pickering...
The dynamic and static properties of the interfacial region between polymer and nanoparticles have w...
Using dissipative particle dynamics (DPD), I model the interfacial adsorption and self-assembly of p...
Liquid crystalline cubic phase nanoparticles (known as Cubosome), based on glycerol monooleate and s...
The effect of the polymer chain topology structure on the adsorption behavior in the polymer-nanopar...