2011
DOI: 10.1016/j.carbpol.2010.12.043
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Studies on graft copolymerization of 3-acrylamidopropyl trimethylammonium chloride on pullulan

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Cited by 48 publications
(27 citation statements)
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“…These radicals abstract hydrogen atoms at C2 from chitosan backbone to form corresponding radicals and thereafter react with the monomers which are in close vicinity of the reaction sites. The propagating chains are terminated by combination to form graft copolymer (Constantin, Mihalcea, Oanea, Harabagiu, & Fundueanu, 2011). Scheme 1.…”
Section: Characterization Of Sorbentmentioning
confidence: 99%
“…These radicals abstract hydrogen atoms at C2 from chitosan backbone to form corresponding radicals and thereafter react with the monomers which are in close vicinity of the reaction sites. The propagating chains are terminated by combination to form graft copolymer (Constantin, Mihalcea, Oanea, Harabagiu, & Fundueanu, 2011). Scheme 1.…”
Section: Characterization Of Sorbentmentioning
confidence: 99%
“…Here, hydroxyl (OH) free radicals attack pectin chain to abstract H ⋅ and to form pectin free radical . APTAC free radicals may undergo homopolymerization to form the microblock structure which results steric hindrance . Probably that is why APTAC can directly not combine to pectin to produce pectin–APTAC graft or crosslinked copolymer.…”
Section: Resultsmentioning
confidence: 99%
“…One possible reason for the observed behaviour could be the substantial amount of CA grafted onto the baseline composite, which creates steric hindrance for further grafting. The increase in monomer concentration would be expected to increase both the grafting percentage which in turn increase the molecular weight of the graft composite [22,23]. The order of SR% observed was: 20CA-g-P(3HB)-EC > 15CA-g-P(3HB)-EC >…”
Section: Grafting Parametersmentioning
confidence: 97%