2004
DOI: 10.1016/j.polymer.2004.08.042
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The synthesis of CDA-g-PMMA copolymers through atom transfer radical polymerization

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Cited by 90 publications
(59 citation statements)
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“…In 2004, Shen et al 78 were the first researchers to use the CDA backbone for grafting" because the use of a low DS Cl reduces the radical-radical coupling which is responsible for both loss of control and gelation. Regarding the polymerisation of St, the monomer conversion of 9-14 % was similar for both macro-initiators Br 0.52 -CDA and Br 0.12 -CDA.…”
Section: Vmentioning
confidence: 99%
“…In 2004, Shen et al 78 were the first researchers to use the CDA backbone for grafting" because the use of a low DS Cl reduces the radical-radical coupling which is responsible for both loss of control and gelation. Regarding the polymerisation of St, the monomer conversion of 9-14 % was similar for both macro-initiators Br 0.52 -CDA and Br 0.12 -CDA.…”
Section: Vmentioning
confidence: 99%
“…For instance, Hult et al completed the grafting of cellulose with poly(e-caprolactone) and poly(L-lactide) via ROP (Lonnberg et al, 2006). Huang et al synthesized the graft copolymers of ethyl cellulose with poly(methyl methacrylate) by atom transfer radical polymerization (Shen & Huang, 2004). EC-g-PCL-b-PLLA graft-block copolymers was prepared by ROP of lactide initiated by a hydroxyl-terminated EC-g-PCL macroinitiator in the presence of Sn(Oct) 2 in bulk (Yuan, Yuan, Zhang, & Xie, 2007).…”
Section: Introductionmentioning
confidence: 99%
“…Here, the hydrophobic PS side chains were grafted from the hydrophilic PECH backbone via ATRP initiated by the pendant chlorine atoms. 22,23 Thus the amphiphilic PECH-g-PS graft copolymer is expected to molecularly self-assemble into the nanophase domains of PS brush layers interweaved with the hydrophilic domains of PECH main chains, providing the effective controlling for the formation of silver nanoparticles.…”
Section: Resultsmentioning
confidence: 99%