The 30th Australasian Polymer Symposium (30APS) was held in Melbourne in 2008 December, where the vibrancy of contemporary polymer science was discussed. Dominik Konkolewicz examined through modeling the effect of the preparation method on the position of the end groups on hyperbranched polymers. Geoffrey Johnston Hall and Monteiro presented new insights into chain-length dependent termination processes through the use of living free-radical polymerization methods. Zhang and Stenzel addressed the preparation of spherical glycopolymers through the reversible addition-fragmentation chain transfer (RAFT), while Davis and Bulmus describe approaches to modify the end groups of RAFT made polymers. Bompart and Haupt summarize the current state of ...
Short-chain polyester methacrylate macromonomers with alkyl, tertiary amine, carboxyl, and hydroxyl ...
© 2016 Dr. Thomas George McKenzieThe synthesis of polymers with controlled molecular weights, design...
Macromolecular Science & Engineering is the paradigm of a multi-disciplinary area in Materials S...
Over the last 50 years, Australian researchers have made significant contributions to polymer scienc...
The current goal in functional polymeric material research is the preparation of polymers with high-...
Polymer reaction and colloidal engineering have reached a level of maturity allowing us to synthesiz...
The development of advanced materials based on well‐defined polymeric architectures is proving to be...
Radical polymerization is one of the most widely used processes for the commercial production of hig...
International audienceMan has always tried to use the materials around him to construct more and mor...
We examine the reversible addition fragmentation chain transfer (RAFT) process with regard to its po...
Significant progress has been made in the field of living/controlled polymerizations over the past d...
Various pathways to generate star polymers using reversible addition?fragmentation transfer (RAFT) a...
Modern applications of polymers demand further elaboration of molecular-level structures as well as ...
The objective of this thesis is to advance the development of catalytic chain transfer polymerizatio...
This highlight describes recent developments in reversible addition-fragmentation transfer (RAFT) po...
Short-chain polyester methacrylate macromonomers with alkyl, tertiary amine, carboxyl, and hydroxyl ...
© 2016 Dr. Thomas George McKenzieThe synthesis of polymers with controlled molecular weights, design...
Macromolecular Science & Engineering is the paradigm of a multi-disciplinary area in Materials S...
Over the last 50 years, Australian researchers have made significant contributions to polymer scienc...
The current goal in functional polymeric material research is the preparation of polymers with high-...
Polymer reaction and colloidal engineering have reached a level of maturity allowing us to synthesiz...
The development of advanced materials based on well‐defined polymeric architectures is proving to be...
Radical polymerization is one of the most widely used processes for the commercial production of hig...
International audienceMan has always tried to use the materials around him to construct more and mor...
We examine the reversible addition fragmentation chain transfer (RAFT) process with regard to its po...
Significant progress has been made in the field of living/controlled polymerizations over the past d...
Various pathways to generate star polymers using reversible addition?fragmentation transfer (RAFT) a...
Modern applications of polymers demand further elaboration of molecular-level structures as well as ...
The objective of this thesis is to advance the development of catalytic chain transfer polymerizatio...
This highlight describes recent developments in reversible addition-fragmentation transfer (RAFT) po...
Short-chain polyester methacrylate macromonomers with alkyl, tertiary amine, carboxyl, and hydroxyl ...
© 2016 Dr. Thomas George McKenzieThe synthesis of polymers with controlled molecular weights, design...
Macromolecular Science & Engineering is the paradigm of a multi-disciplinary area in Materials S...