This dissertation investigates the effect of composition and architecture of star polymers on their fundamental interfacial behavior at fluid interfaces and determines the contributions of important interfacial activity to the high foaming and emulsifying efficiency of star polymers. Star polymers are a novel class of surface active materials with a dense polymeric core and emanating polymer arms. Star polymers developed in this work are synthesized via atom transfer radical polymerization (ATRP) and are shown to be efficient foam and emulsion stabilizers. Three important dynamic interfacial processes: interfacial tension reduction, dynamic dilatational modulus and extent of adsorption are examined for star polymers with various structures ...
Performing molecular dynamics simulations on model systems we study the structural changes and therm...
During this period, the authors treated a myriad of problems associated with the interfacial propert...
Elucidating the mechanisms responsible for spontaneous adsorption of nanoparticles (NPs) at interfac...
This dissertation investigates the effect of composition and architecture of star polymers on their ...
The properties of fluid/fluid interfaces control interfacial phenomena like wetting, foaming and coa...
Surface-active polymers have important applications as effective and responsive emulsifiers, foaming...
We present a study focused on characterizing the interaction forces between mica surfaces across sol...
We present a study focused on characterizing the interaction forces between mica surfaces across sol...
Multiarm star copolymers with approximately 460 poly(ethylene oxide) (PEO) arms that have a degree ...
We describe the preparation and the surface properties of monolayers of a new set of (PBb-PEO)(4) am...
International audienceWe review some results from the literature describing the structure and dynami...
We present a study focused on characterizing the interaction forces between mica surfaces across sol...
The current study examines the interfacial behaviour and foaming potential of poly(vinylpyrrolidone)...
Star diblock copolymers containing polystyrene (PS) and poly(ethylene oxide) (PEO) were investigated...
peer reviewedIn the reported experiments, surface and interfacial activities of A(B)//2 star-shaped ...
Performing molecular dynamics simulations on model systems we study the structural changes and therm...
During this period, the authors treated a myriad of problems associated with the interfacial propert...
Elucidating the mechanisms responsible for spontaneous adsorption of nanoparticles (NPs) at interfac...
This dissertation investigates the effect of composition and architecture of star polymers on their ...
The properties of fluid/fluid interfaces control interfacial phenomena like wetting, foaming and coa...
Surface-active polymers have important applications as effective and responsive emulsifiers, foaming...
We present a study focused on characterizing the interaction forces between mica surfaces across sol...
We present a study focused on characterizing the interaction forces between mica surfaces across sol...
Multiarm star copolymers with approximately 460 poly(ethylene oxide) (PEO) arms that have a degree ...
We describe the preparation and the surface properties of monolayers of a new set of (PBb-PEO)(4) am...
International audienceWe review some results from the literature describing the structure and dynami...
We present a study focused on characterizing the interaction forces between mica surfaces across sol...
The current study examines the interfacial behaviour and foaming potential of poly(vinylpyrrolidone)...
Star diblock copolymers containing polystyrene (PS) and poly(ethylene oxide) (PEO) were investigated...
peer reviewedIn the reported experiments, surface and interfacial activities of A(B)//2 star-shaped ...
Performing molecular dynamics simulations on model systems we study the structural changes and therm...
During this period, the authors treated a myriad of problems associated with the interfacial propert...
Elucidating the mechanisms responsible for spontaneous adsorption of nanoparticles (NPs) at interfac...