Synthesis of multicompositional polymeric nanoparticles of diameters 100–150 nm comprising well-defined multiblock copolymers reaching from the particle surface to the particle core was conducted using surfactant-free aqueous macroRAFT emulsion polymerization. The imposed constraints on chain mobility as well as chemical incompatibility between the blocks result in microphase separation, leading to formation of an onion-like multilayered particle morphology with individual layer thicknesses of approximately 20 nm. The approach provides considerable versatility in particle morphology design as the composition of individual layers as well as the number of layers can be tailored as desired, offering more complex particle design compared to app...
There are no reports of star polymers synthesized by reversible addition-fragmentation chain transfe...
The controlled synthesis of amphiphilic di-block copolymers allows a large array of nanostructures t...
We report a method to efficiently prepare multisegmented polymers via a combination of step-growth (...
Synthesis of multicompositional polymeric nanoparticles of diameters 100–150 nm comprising well-defi...
Block copolymers composed of polymer segments of sufficiently high molecular weight such that micro...
The synthesis of well-defined polymer nanoparticles will have immediate applications in the biomedic...
Block copolymers composed of polymer segments of sufficiently high molecular weight such that microp...
Multiblock copolymers are a class of polymeric materials with a range of potential applications. We ...
Polymeric nanoparticles (NPs) are highly engineered nanoemulsions with applications in several field...
The present paper describes the successful one-pot synthesis of self-stabilized particles composed o...
Polymerization-induced self-assembly (PISA) is a widely used technique for the synthesis of nanopart...
Multiblock copolymers synthesized via reversible addition–fragmentation transfer (RAFT) emulsion pol...
Porous polymers generated from high internal phase emulsions (HIPEs), having interconnected open-voi...
Vesicle templated emulsion polymerization is a special form of emulsion polymerization where the pol...
The environmentally-friendly synthesis of epoxy-functional spherical nanoparticles has been achieved...
There are no reports of star polymers synthesized by reversible addition-fragmentation chain transfe...
The controlled synthesis of amphiphilic di-block copolymers allows a large array of nanostructures t...
We report a method to efficiently prepare multisegmented polymers via a combination of step-growth (...
Synthesis of multicompositional polymeric nanoparticles of diameters 100–150 nm comprising well-defi...
Block copolymers composed of polymer segments of sufficiently high molecular weight such that micro...
The synthesis of well-defined polymer nanoparticles will have immediate applications in the biomedic...
Block copolymers composed of polymer segments of sufficiently high molecular weight such that microp...
Multiblock copolymers are a class of polymeric materials with a range of potential applications. We ...
Polymeric nanoparticles (NPs) are highly engineered nanoemulsions with applications in several field...
The present paper describes the successful one-pot synthesis of self-stabilized particles composed o...
Polymerization-induced self-assembly (PISA) is a widely used technique for the synthesis of nanopart...
Multiblock copolymers synthesized via reversible addition–fragmentation transfer (RAFT) emulsion pol...
Porous polymers generated from high internal phase emulsions (HIPEs), having interconnected open-voi...
Vesicle templated emulsion polymerization is a special form of emulsion polymerization where the pol...
The environmentally-friendly synthesis of epoxy-functional spherical nanoparticles has been achieved...
There are no reports of star polymers synthesized by reversible addition-fragmentation chain transfe...
The controlled synthesis of amphiphilic di-block copolymers allows a large array of nanostructures t...
We report a method to efficiently prepare multisegmented polymers via a combination of step-growth (...