Particle-stabilized emulsions and foams are widely encountered, as such there remains a concerted effort to better understand the relationship between the particle network structure surrounding droplets and bubbles, and the rheology of the particle-stabilized interface. Poly(vinylpyrrolidone)-coated silica nanoparticles were used to stabilize foams. The shear rheology of planar particle-laden interfaces were measured using an interfacial shear rheometer and the rheological properties measured as a function of the sub-phase electrolyte concentration and surface pressure. All particle-laden interfaces exhibited a liquid-like to solid-like transition with increasing surface pressure. The surface pressure-dependent interfacial rheology was then...
The current study examined the foaming behavior of poly(vinylpyrrolidone) (PVP)–silica composite n...
Particles are known to adsorb at fluid-fluid interfaces in small molecule systems such as oil/water ...
We report here a review of particle-laden interfaces. We discuss the importance of the particle’s we...
Particle-stabilized emulsions and foams are widely encountered, as such there remains a concerted ef...
The current study examines the interfacial behaviour and foaming potential of poly(vinylpyrrolidone)...
Hypothesis The mobility of core–shell nanoparticles partitioned at an air–water interface is strong...
This work is aimed at gaining a fundamental understanding of the role of interfacial phenomena in ...
The current study examined the foaming behavior of poly(vinylpyrrolidone) (PVP)-silica composite nan...
The current study examined the foaming behavior of poly(vinylpyrrolidone) (PVP)-silica composite nan...
In an attempt to elucidate the remarkable stability of foams generated from dispersions of partially...
We have studied the properties (surface pressure, compression and shear moduli, texture) of silica n...
The effect of particles at fluid interfaces is a topic of increasing interest especially for the app...
Surface active particles have the ability to adsorb and rigidify an interface. They are particularly...
International audienceWe have studied the properties (surface pressure, compression and shear moduli...
We examined the effect of interfacially active particles on the morphology and rheology of droplet/m...
The current study examined the foaming behavior of poly(vinylpyrrolidone) (PVP)–silica composite n...
Particles are known to adsorb at fluid-fluid interfaces in small molecule systems such as oil/water ...
We report here a review of particle-laden interfaces. We discuss the importance of the particle’s we...
Particle-stabilized emulsions and foams are widely encountered, as such there remains a concerted ef...
The current study examines the interfacial behaviour and foaming potential of poly(vinylpyrrolidone)...
Hypothesis The mobility of core–shell nanoparticles partitioned at an air–water interface is strong...
This work is aimed at gaining a fundamental understanding of the role of interfacial phenomena in ...
The current study examined the foaming behavior of poly(vinylpyrrolidone) (PVP)-silica composite nan...
The current study examined the foaming behavior of poly(vinylpyrrolidone) (PVP)-silica composite nan...
In an attempt to elucidate the remarkable stability of foams generated from dispersions of partially...
We have studied the properties (surface pressure, compression and shear moduli, texture) of silica n...
The effect of particles at fluid interfaces is a topic of increasing interest especially for the app...
Surface active particles have the ability to adsorb and rigidify an interface. They are particularly...
International audienceWe have studied the properties (surface pressure, compression and shear moduli...
We examined the effect of interfacially active particles on the morphology and rheology of droplet/m...
The current study examined the foaming behavior of poly(vinylpyrrolidone) (PVP)–silica composite n...
Particles are known to adsorb at fluid-fluid interfaces in small molecule systems such as oil/water ...
We report here a review of particle-laden interfaces. We discuss the importance of the particle’s we...