Core cross-linked star polymers were successfully synthesized via cationic reversible addition fragmentation chain-transfer (RAFT) polymerization, which produces macro RAFT agents as the arm polymers, followed by three different approaches used for the block copolymerization of divinyl monomers as the core and subsequent cross-linking reaction. The following three approaches were used: (i) one-pot cationic RAFT block polymerization and the simultaneous cross-linking reaction of divinyl ether; (ii) mechanistic transformation to radical RAFT block polymerization and the simultaneous cross-linking reaction of a hetero divinyl monomer, which possesses both vinyl ether and acrylate moieties; and (iii) one-pot cationic RAFT selective block copoly...
Amphiphilic supramolecular miktoarm star copolymers linked by ionic bonds with controlled molecular ...
The precise control of polymer chain architecture has been made possible by developments in polymer ...
The metal-free RAFT cationic polymerization (MRCP) of vinyl ethers (VEs) mediated by HCl·Et<sub>2</s...
Various pathways to generate star polymers using reversible addition?fragmentation transfer (RAFT) a...
Various pathways to generate star polymers using reversible addition - fragmentation transfer ( RAFT...
Core-crosslinked star polymers were prepared using organocatalyzed living radical polymerization via...
Star polymers bearing vinyl-functionalized hyperbranched cores were successfully prepared at moderat...
The synthesis of star and hydrogel polymers mediated by reversible addition-fragmentation chain-tran...
Reversible addition-fragmentation chain transfer (RAFT) polymerization has been shown to be a facile...
A near-ambient and oxygen tolerant arm-first star polymer synthesis strategy was developed using alk...
The combination of RAFT chemistry and the hetero-Diels-Alder (HDA) cycloaddition was successfully ut...
The combination of RAFT chemistry and the hetero-Diels-Alder (HDA) cycloaddition was successfully ut...
Star polymers are highly functional materials that display unique properties in comparison to linear...
The aim of this project is to explore RAFT polymerization and arm-first approach to synthesize well-...
We have developed a novel strategy for the preparation of ion-bonded supramolecular star polymers by...
Amphiphilic supramolecular miktoarm star copolymers linked by ionic bonds with controlled molecular ...
The precise control of polymer chain architecture has been made possible by developments in polymer ...
The metal-free RAFT cationic polymerization (MRCP) of vinyl ethers (VEs) mediated by HCl·Et<sub>2</s...
Various pathways to generate star polymers using reversible addition?fragmentation transfer (RAFT) a...
Various pathways to generate star polymers using reversible addition - fragmentation transfer ( RAFT...
Core-crosslinked star polymers were prepared using organocatalyzed living radical polymerization via...
Star polymers bearing vinyl-functionalized hyperbranched cores were successfully prepared at moderat...
The synthesis of star and hydrogel polymers mediated by reversible addition-fragmentation chain-tran...
Reversible addition-fragmentation chain transfer (RAFT) polymerization has been shown to be a facile...
A near-ambient and oxygen tolerant arm-first star polymer synthesis strategy was developed using alk...
The combination of RAFT chemistry and the hetero-Diels-Alder (HDA) cycloaddition was successfully ut...
The combination of RAFT chemistry and the hetero-Diels-Alder (HDA) cycloaddition was successfully ut...
Star polymers are highly functional materials that display unique properties in comparison to linear...
The aim of this project is to explore RAFT polymerization and arm-first approach to synthesize well-...
We have developed a novel strategy for the preparation of ion-bonded supramolecular star polymers by...
Amphiphilic supramolecular miktoarm star copolymers linked by ionic bonds with controlled molecular ...
The precise control of polymer chain architecture has been made possible by developments in polymer ...
The metal-free RAFT cationic polymerization (MRCP) of vinyl ethers (VEs) mediated by HCl·Et<sub>2</s...