Stimulus-responsive colloidosomes which completely dissolve upon a mild pH change are developed. pH-Responsive nanoparticles that dissolve upon a mild pH increase are synthesized by a nanoprecipitation method and are used as stabilizers for a double water-in-oil-in-water Pickering emulsion. These emulsions serve as templates for the production of pH-responsive colloidosomes. Removal of the middle oil phase produces water-core colloidosomes that have a shell made of pH-responsive nanoparticles, which rapidly dissolve above pH 7. The permeability of these capsules is assessed by FRAP, whereby the diffusion of a fluorescent tracer through the capsule shell is monitored. Three methods for tuning the permeability of the pH-responsive colloidos...
We synthesized surface-active lipophilic core–hydrophilic shell latex particles, and we probed their...
We propose a novel route for the stabilization of oil-in-water Pickering emulsions using inherently ...
This doctoral thesis highlights the most interesting experimental results achieved between 2015 and ...
Pickering emulsions are water or oil droplets that are stabilized by colloidal particles and have be...
This work uses silica nanoparticles to stabilize oil-in-water and water-in-water emulsions. These em...
Colloidosomes are micrometer-sized hollow particles that have shells consisting of coagulated or fus...
Pickering emulsions offer important advantages over conventional surfactant-stabilized emulsions, in...
Block copolymer nanoparticles prepared via polymerization-induced self-assembly (PISA) represent an ...
pH-responsive oil-in-water Pickering emulsions were prepared simply by using negatively charged sili...
A commercial glycerol-modified 19 nm silica sol has been homogenised with sunflower oil to form stab...
In this thesis, the results are reported of experimental studies in which oil, water and colloidal p...
Hypothesis: Surfactants in emulsions sometimes do not provide adequate stability against coalescence...
ABSTRACT: We demonstrate that the separation and recovery of solid-stabilized (Pickering) emulsion c...
In recent years, emulsions stabilized by micro-or nanoparticles (known as Pickering emulsions) hav...
We synthesized surface-active lipophilic core−hydrophilic shell latex particles, and we probed their...
We synthesized surface-active lipophilic core–hydrophilic shell latex particles, and we probed their...
We propose a novel route for the stabilization of oil-in-water Pickering emulsions using inherently ...
This doctoral thesis highlights the most interesting experimental results achieved between 2015 and ...
Pickering emulsions are water or oil droplets that are stabilized by colloidal particles and have be...
This work uses silica nanoparticles to stabilize oil-in-water and water-in-water emulsions. These em...
Colloidosomes are micrometer-sized hollow particles that have shells consisting of coagulated or fus...
Pickering emulsions offer important advantages over conventional surfactant-stabilized emulsions, in...
Block copolymer nanoparticles prepared via polymerization-induced self-assembly (PISA) represent an ...
pH-responsive oil-in-water Pickering emulsions were prepared simply by using negatively charged sili...
A commercial glycerol-modified 19 nm silica sol has been homogenised with sunflower oil to form stab...
In this thesis, the results are reported of experimental studies in which oil, water and colloidal p...
Hypothesis: Surfactants in emulsions sometimes do not provide adequate stability against coalescence...
ABSTRACT: We demonstrate that the separation and recovery of solid-stabilized (Pickering) emulsion c...
In recent years, emulsions stabilized by micro-or nanoparticles (known as Pickering emulsions) hav...
We synthesized surface-active lipophilic core−hydrophilic shell latex particles, and we probed their...
We synthesized surface-active lipophilic core–hydrophilic shell latex particles, and we probed their...
We propose a novel route for the stabilization of oil-in-water Pickering emulsions using inherently ...
This doctoral thesis highlights the most interesting experimental results achieved between 2015 and ...