Hydrophobic poly(methyl methacrylate) (PMMA) colloidal particles, when dispersed in oil with a relatively high dielectric constant, can become highly charged. In the presence of an interface with a conducting aqueous phase, image-charge effects lead to strong binding of colloidal particles to the interface, even though the particles are wetted very little by the aqueous phase. We study both the behavior of individual colloidal particles as they approach the interface and the interactions between particles that are already interfacially bound. We demonstrate that using particles which are minimally wetted by the aqueous phase allows us to isolate and study those interactions which are due solely to charging of the particle surface in oil. Fi...
We report results of a systematic experimental study of interactions between charged polystyrene (PS...
We report an optical and atomic force microscopic study of interactions between charged polystyrene ...
The dielectric interiors of colloidal particles are responsible for dispersion (van der Waals) inter...
We theoretically and experimentally investigate colloid–oil–water-interface interactions of charged,...
We theoretically and experimentally investigate colloid–oil–water-interface interactions of charged,...
Monolayers of colloidal particles at oil-water interfaces readily crystallize owing to electrostatic...
We theoretically and experimentally investigate colloid–oil–water-interface interactions of charged,...
We theoretically and experimentally investigate colloid–oil–water-interface interactions of charged,...
We show that the interaction of an oil-dispersed colloidal particle with an oil-water interface is h...
We show that the interaction of an oil-dispersed colloidal particle with an oil-water interface is h...
We investigated various aspects of colloidal dispersions. In this study we not only emphasized the t...
The interaction between micron-sized charged colloidal particles at polar/non-polar liquidinterfaces...
Nanometre- and micrometre-sized charged particles at aqueous interfaces are typically stabilized by ...
We study the dynamics of colloidal particles as they approach and breach a water-oil interface. We u...
The electrostatic interaction of charged spherical colloids trapped at an interface between a nonpol...
We report results of a systematic experimental study of interactions between charged polystyrene (PS...
We report an optical and atomic force microscopic study of interactions between charged polystyrene ...
The dielectric interiors of colloidal particles are responsible for dispersion (van der Waals) inter...
We theoretically and experimentally investigate colloid–oil–water-interface interactions of charged,...
We theoretically and experimentally investigate colloid–oil–water-interface interactions of charged,...
Monolayers of colloidal particles at oil-water interfaces readily crystallize owing to electrostatic...
We theoretically and experimentally investigate colloid–oil–water-interface interactions of charged,...
We theoretically and experimentally investigate colloid–oil–water-interface interactions of charged,...
We show that the interaction of an oil-dispersed colloidal particle with an oil-water interface is h...
We show that the interaction of an oil-dispersed colloidal particle with an oil-water interface is h...
We investigated various aspects of colloidal dispersions. In this study we not only emphasized the t...
The interaction between micron-sized charged colloidal particles at polar/non-polar liquidinterfaces...
Nanometre- and micrometre-sized charged particles at aqueous interfaces are typically stabilized by ...
We study the dynamics of colloidal particles as they approach and breach a water-oil interface. We u...
The electrostatic interaction of charged spherical colloids trapped at an interface between a nonpol...
We report results of a systematic experimental study of interactions between charged polystyrene (PS...
We report an optical and atomic force microscopic study of interactions between charged polystyrene ...
The dielectric interiors of colloidal particles are responsible for dispersion (van der Waals) inter...