Modification of polysaccharides through controlled/living radical polymerization grafting - Towards the generation of high performance hybrids

Tizzotti, Morgan, Charlot, Aurelia, Fleury, Etienne, Stenzel, Martina and Bernard, Julien (2010) Modification of polysaccharides through controlled/living radical polymerization grafting - Towards the generation of high performance hybrids. Macromolecular Rapid Communications, 31 20: 1751-1772. doi:10.1002/marc.201000072

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Author Tizzotti, Morgan
Charlot, Aurelia
Fleury, Etienne
Stenzel, Martina
Bernard, Julien
Title Modification of polysaccharides through controlled/living radical polymerization grafting - Towards the generation of high performance hybrids
Journal name Macromolecular Rapid Communications   Check publisher's open access policy
ISSN 1022-1336
1521-3927
Publication date 2010-10-01
Year available 2011
Sub-type Critical review of research, literature review, critical commentary
DOI 10.1002/marc.201000072
Volume 31
Issue 20
Start page 1751
End page 1772
Total pages 22
Place of publication Weinheim, Germany
Publisher Wiley - V C H Verlag GmbH & Co. KGaA
Collection year 2011
Language eng
Abstract This review covers the literature concerning the modification of polysaccharides through controlled radical polymerizations (NMP, ATRP and RAFT). The different routes to well-defined polysaccharide-based macromolecules (block and graft copolymers) and graft-functionalized polysaccharide surfaces as well as the applications of these polysaccharide-based hybrids are extensively discussed.
Keyword Cellulose
Controlled Radical Polymerizations
Polysaccharides
Surface Modification
Q-Index Code C1
Q-Index Status Confirmed Code
Institutional Status UQ

Document type: Journal Article
Sub-type: Critical review of research, literature review, critical commentary
Collections: Official 2011 Collection
Centre for Nutrition and Food Sciences Publications
 
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Citation counts: TR Web of Science Citation Count  Cited 80 times in Thomson Reuters Web of Science Article | Citations
Scopus Citation Count Cited 85 times in Scopus Article | Citations
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Created: Tue, 08 Mar 2011, 02:25:25 EST