International audienceSelf-assembly of core-shell nanoparticles (NPs) at liquid-liquid interfaces is rapidly emerging as a strategy for the production of novel nano-materials bearing vast potential for applications, including membrane fabrication, drug delivery and emulsion stabilization. The development of such nanoparticle-based materials is facilitated by structural characterization techniques that are able to monitor in situ the self-assembly process during its evolution. Here, we present an in situ high-energy X-ray reflectivity study of the evolution of the vertical position (contact angle) and inter-particle spacing of core-shell iron oxide-poly(ethylene glycol) (PEG) nanoparticles adsorbing at flat, horizontal buried water-n-decane ...
The adsorption behavior of self-assembled lipid liquid crystalline nanoparticles at different model ...
We investigate conformations and effective interactions of polymer-coated nanopar- ticles adsorbed a...
In this article, the adsorption of latex core-responsive polymer-shell nanoparticles at the air-wate...
Nanoparticles have unique properties, compared with their bulk materials, and potential applications...
Nanoparticles have unique properties, compared with their bulk materials, and potential applications...
The encapsulation of a rigid core within a soft polymeric shell allows obtaining composite colloidal...
Interfacial interactions, chain dynamics, and glass and melting transitions were studied in well-def...
The self-assembly of polymer-based surfactants and nanoparticles on fluid–fluid interfaces is centra...
Nanoparticles (NPs) have been widely applied in fields as diverse as energy conversion, photovoltaic...
A series of sub-100 nm superparamagnetic iron oxide nanoparticles with amphiphilic poly(acrylic acid...
Using dissipative particle dynamics (DPD), I model the interfacial adsorption and self-assembly of p...
Latex colloids are among the most promising materials for broad thin film applications due to their f...
Bottom up self-assembly of functional materials at liquid-liquid interfaces has recently emerged as ...
We investigate the conformation, position, and dynamics of core–shell nanoparticles (CSNPs) composed...
Surface heterogeneity affects the behavior of nanoparticles at liquid interfaces. To gain a deeper u...
The adsorption behavior of self-assembled lipid liquid crystalline nanoparticles at different model ...
We investigate conformations and effective interactions of polymer-coated nanopar- ticles adsorbed a...
In this article, the adsorption of latex core-responsive polymer-shell nanoparticles at the air-wate...
Nanoparticles have unique properties, compared with their bulk materials, and potential applications...
Nanoparticles have unique properties, compared with their bulk materials, and potential applications...
The encapsulation of a rigid core within a soft polymeric shell allows obtaining composite colloidal...
Interfacial interactions, chain dynamics, and glass and melting transitions were studied in well-def...
The self-assembly of polymer-based surfactants and nanoparticles on fluid–fluid interfaces is centra...
Nanoparticles (NPs) have been widely applied in fields as diverse as energy conversion, photovoltaic...
A series of sub-100 nm superparamagnetic iron oxide nanoparticles with amphiphilic poly(acrylic acid...
Using dissipative particle dynamics (DPD), I model the interfacial adsorption and self-assembly of p...
Latex colloids are among the most promising materials for broad thin film applications due to their f...
Bottom up self-assembly of functional materials at liquid-liquid interfaces has recently emerged as ...
We investigate the conformation, position, and dynamics of core–shell nanoparticles (CSNPs) composed...
Surface heterogeneity affects the behavior of nanoparticles at liquid interfaces. To gain a deeper u...
The adsorption behavior of self-assembled lipid liquid crystalline nanoparticles at different model ...
We investigate conformations and effective interactions of polymer-coated nanopar- ticles adsorbed a...
In this article, the adsorption of latex core-responsive polymer-shell nanoparticles at the air-wate...