Using dissipative particle dynamics (DPD), I model the interfacial adsorption and self-assembly of polymer-grafted nanoparticles at a planar oil–water interface. The amphiphilic core–shell nanoparticles irreversibly adsorb to the interface and create a monolayer covering the interface. The polymer chains of the adsorbed nanoparticles are significantly deformed by surface tension to conform to the interface. I quantitatively characterize the properties of the particle-laden interface and the structure of the monolayer in detail at different surface coverages. I observe that the monolayer of particles grafted with long polymer chains undergoes an intriguing liquid–crystalline–amorphous phase transition in which the relationship between the mo...
Nanoparticles have unique properties, compared with their bulk materials, and potential applications...
Interfacial phenomena and the associated kinetic, thermodynamic and structural properties are releva...
The self-assembly of polymer-based surfactants and nanoparticles on fluid–fluid interfaces is centra...
Adsorption-driven self-assembly of nanoparticles at fluid interfaces is a promising bottom-up approa...
Elucidating the mechanisms responsible for spontaneous adsorption of nanoparticles (NPs) at interfac...
Elucidating the mechanisms responsible for spontaneous adsorption of nanoparticles (NPs) at interfac...
The self-assembly and interfacial jamming of spherical Janus nanoparticles (JNPs) at the water/oil i...
Solid micron- and nano- particles have been extensively used to stabilize dispersions such Pickering...
We investigate the conformation, position, and dynamics of core–shell nanoparticles (CSNPs) composed...
We investigate conformations and effective interactions of polymer-coated nanopar- ticles adsorbed a...
The effect of polymer surfactant structure and concentration on the self-assembly, mechanical proper...
Nanoparticles have unique properties, compared with their bulk materials, and potential applications...
Surfactants and nanoparticles (NPs) are commonly used to stabilize emulsions, which have found appli...
We investigate conformations and effective interactions of polymer-coated nanoparticles adsorbed at ...
Experiments with the self-assembly of nanoparticles at liquid interfaces suggest that cooperative an...
Nanoparticles have unique properties, compared with their bulk materials, and potential applications...
Interfacial phenomena and the associated kinetic, thermodynamic and structural properties are releva...
The self-assembly of polymer-based surfactants and nanoparticles on fluid–fluid interfaces is centra...
Adsorption-driven self-assembly of nanoparticles at fluid interfaces is a promising bottom-up approa...
Elucidating the mechanisms responsible for spontaneous adsorption of nanoparticles (NPs) at interfac...
Elucidating the mechanisms responsible for spontaneous adsorption of nanoparticles (NPs) at interfac...
The self-assembly and interfacial jamming of spherical Janus nanoparticles (JNPs) at the water/oil i...
Solid micron- and nano- particles have been extensively used to stabilize dispersions such Pickering...
We investigate the conformation, position, and dynamics of core–shell nanoparticles (CSNPs) composed...
We investigate conformations and effective interactions of polymer-coated nanopar- ticles adsorbed a...
The effect of polymer surfactant structure and concentration on the self-assembly, mechanical proper...
Nanoparticles have unique properties, compared with their bulk materials, and potential applications...
Surfactants and nanoparticles (NPs) are commonly used to stabilize emulsions, which have found appli...
We investigate conformations and effective interactions of polymer-coated nanoparticles adsorbed at ...
Experiments with the self-assembly of nanoparticles at liquid interfaces suggest that cooperative an...
Nanoparticles have unique properties, compared with their bulk materials, and potential applications...
Interfacial phenomena and the associated kinetic, thermodynamic and structural properties are releva...
The self-assembly of polymer-based surfactants and nanoparticles on fluid–fluid interfaces is centra...