Modification of polysaccharides through controlled/living radical polymerization grafting-towards the generation of high performance hybrids.
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Summary
This review covers the literature concerning the modification of polysaccharides through controlled radical polymerizations (NMP, ATRP and RAFT) and the different routes to well-definedpolysaccharide-based macromolecules (block and graft copolymers) and graft-functionalized poly Saccharide surfaces.
- Type
- article
- Published
- 2010-10-18
- Cited by
- 152
- References
- 94
- OpenAlex
- https://openalex.org/W1987557830
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:38887182
Keywords
Polysaccharide, Grafting, Copolymer, Atom-transfer radical-polymerization, Raft
References
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- Gate effect of theophylline-imprinted polymers grafted to the cellulose by living radical polymerization
- Synthesis of well-defined Locust Bean Gum-graft-copolymers using ambient aqueous atom transfer radical polymerisation.
- Mechanism and kinetics of RAFT-mediated graft polymerization of styrene on a solid surface. 1. Experimental evidence of surface radical migration
- End‐functionalization of polystyrene by malto‐oligosaccharide generating aggregation‐tunable polymeric reverse micelle
- Synthesis of natural-synthetic hybrid materials from cellulose via the RAFT process.
- Polystyrene comb polymers built on cellulose or poly(styrene-co-2-hydroxyethylmethacrylate) backbones as substrates for the preparation of structured honeycomb films
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- Graft polymerization on cellulose derivatives by the transfer reaction
- Unimolecular Nanocontainers Prepared by ROP and Subsequent ATRP from Hydroxypropylcellulose
- Surface-initiated atom transfer radical polymerization : A new method for preparation of polymeric membrane adsorbers
- Hydrodynamic transformation of a freestanding polymer nanosheet induced by a thermoresponsive surface.
- A novel method of controlled grafting modification of chitosan via RAFT polymerization using chitosan-RAFT agent
- Grafting of zwitterion from cellulose membranes via ATRP for improving blood compatibility.
Cited by
- Surface Modification of Cellulose by Covalent Grafting and Physical Adsorption for Biocomposite Applications
- Graft modification of cellulose: Methods, properties and applications
- Expanded corn starch as a versatile material in atom transfer radical polymerization (ATRP) of styrene and methyl methacrylate.
- New biocompatible amphiphilic diblock copolymer based on dextran
- Synthesis, self‐assembly and redox‐responsive properties of well‐defined hydroxypropylcellulose‐graft‐poly(2‐acryloyloxyethyl ferrocenecarboxylate) copolymers
- Synthesis of polystyrene-grafted cellulose acetate copolymers via nitroxide-mediated polymerization
- PEGylation of Chitosan Via Nitroxide-Mediated Polymerization in Aqueous Media
- The irruption of polymers from renewable resources on the scene of macromolecular science and technology
- “Smart” Materials Based on Cellulose: A Review of the Preparations, Properties, and Applications
- Cellulose-g-PDMAam copolymers by controlled radical polymerization in homogeneous medium and their aqueous solution properties
- Integration of renewable cellulose and rosin towards sustainable copolymers by “grafting from” ATRP
- Paper‐sheet biocomposites based on wood pulp grafted with poly(ε‐caprolactone)
- Oxidation of glycogen “molecular nanoparticles” by periodate
- Functional biohybrid materials synthesized via surface-initiated MADIX/RAFT polymerization from renewable natural wood fiber: Grafting of polymer as non leaching preservative
- One-pot synthesis of hyperbranched glycopolymers by RAFT polymerization
- Overcoming the PEG-addiction: well-defined alternatives to PEG, from structure–property relationships to better defined therapeutics
- Modification of cellulose as a promising direction in the design of new materials
- Functional galactomannan platform from convenient esterification in imidazolium-based ionic liquids
- Grafting of zwitterion from polysulfone membrane via surface-initiated ATRP with enhanced antifouling property and biocompatibility
- Synthesis of novel high oil‐absorption resins of poly(methyl methacrylate–butyl methacrylate) by surface‐initiated atom transfer radical polymerization using activators regenerated by electron transfer for efficient removal of oil
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