Comb polymers were prepared using the RAFT process via a Z-group approach. Trithiocarbonate RAFT agents were covalently bound to a polymer backbone via ester linkages. Two different types of comb polymer backbones were prepared, based on either modified cellulose or statistical poly(styrene-co-2-hydroxyethylmethacrylate) backbones. The subsequent polymerization of styrene from these multi-RAFT-functional backbones displayed some unusual kinetics with the rate of polymerization increasing concomitantly with the trithiocarbonate concentration. The molecular weight of each polystyrene branch increased with conversion, however, deviation from the theoretical molecular weight was detected. The polystyrene comb polymers were utilized in a casting...
Reversible addition-fragmentation chain transfer (RAFT) polymerization has been shown to be a facile...
RAFT polymerization was used to prepare polystyrene ? poly(4-vinyl pyridine) block copolymers, PSn-b...
Statistical, gradient, and block copolymer containing 2-(2′,3′, 4′,6′-tetra-O-acetyl-β-d-galactosylo...
Comb polymers were prepared using the RAFT process via a Z-group approach. Trithiocarbonate RAFT age...
Carbohydrate based polystyrene was synthesized via RAFT polymerization. The RAFT agents were based o...
Honeycomb structured porous materials were formed using four different casting variations of the wat...
The synthesis of polystyrene-block-poly(N,N-dimethylacrylamide) (PS-b-PDMA) via RAFT polymerization ...
This dissertation studies and examines the process of formation of honeycomb structured porous films...
In recent times, it was divulged that highly ordered honeycomb structured porous films from a variet...
Ce travail de thèse de doctorat vise à l’élaboration de surfaces poreuses hiérarchiquement structuré...
Honeycomb structured porous polymer films were grafted with a thermo-responsive polymer poly(N-isopr...
The “breath figures” method provides an efficient and cost-effective method to produce highly ordere...
Honeycomb-structured porous films were prepared using customized amphiphilic block copolymers, synth...
© 2013 Dr. Zhou ZhangPolymeric films with uniform porous patterns and narrow pore size distributions...
International audienceIn the present work, we show that Cu(0)-mediated controlled radical polymeriza...
Reversible addition-fragmentation chain transfer (RAFT) polymerization has been shown to be a facile...
RAFT polymerization was used to prepare polystyrene ? poly(4-vinyl pyridine) block copolymers, PSn-b...
Statistical, gradient, and block copolymer containing 2-(2′,3′, 4′,6′-tetra-O-acetyl-β-d-galactosylo...
Comb polymers were prepared using the RAFT process via a Z-group approach. Trithiocarbonate RAFT age...
Carbohydrate based polystyrene was synthesized via RAFT polymerization. The RAFT agents were based o...
Honeycomb structured porous materials were formed using four different casting variations of the wat...
The synthesis of polystyrene-block-poly(N,N-dimethylacrylamide) (PS-b-PDMA) via RAFT polymerization ...
This dissertation studies and examines the process of formation of honeycomb structured porous films...
In recent times, it was divulged that highly ordered honeycomb structured porous films from a variet...
Ce travail de thèse de doctorat vise à l’élaboration de surfaces poreuses hiérarchiquement structuré...
Honeycomb structured porous polymer films were grafted with a thermo-responsive polymer poly(N-isopr...
The “breath figures” method provides an efficient and cost-effective method to produce highly ordere...
Honeycomb-structured porous films were prepared using customized amphiphilic block copolymers, synth...
© 2013 Dr. Zhou ZhangPolymeric films with uniform porous patterns and narrow pore size distributions...
International audienceIn the present work, we show that Cu(0)-mediated controlled radical polymeriza...
Reversible addition-fragmentation chain transfer (RAFT) polymerization has been shown to be a facile...
RAFT polymerization was used to prepare polystyrene ? poly(4-vinyl pyridine) block copolymers, PSn-b...
Statistical, gradient, and block copolymer containing 2-(2′,3′, 4′,6′-tetra-O-acetyl-β-d-galactosylo...