2012
DOI: 10.1039/c1py00453k
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Grignard metathesis (GRIM) polymerization for the synthesis of conjugated block copolymers containing regioregular poly(3-hexylthiophene)

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Cited by 115 publications
(79 citation statements)
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References 63 publications
(104 reference statements)
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“…[62] The process is also given substantial coverage in most recent reviews that, in part, relate to polymer synthesis, living or controlled polymerization or novel architectures. Some of those that include significant mention of RAFT polymerization include reviews on RDRP, [63] mechanism and reagent design, [11,64,65] click chemistry, [66][67][68][69][70][71][72] synthesis of telechelics, [73] the polymerization of carbazole-containing monomers, [74] N-vinyl-1,2,3-triazoles, [75] N-vinyl heterocycles, [76] fluoro-monomers, [77] and glycomonomers, [78][79][80] synthesis of metallopolymers, [81] conjugated block copolymers, [82] dye-functionalized polymers, [83] stimuliresponsive polymers, [84,85] complex architectures, [86,87] polyolefin blocks, [88] biopolymer-polymer conjugates and bioapplications, [59,[89][90][91][92][93] polysaccharide modification, [94,95] polymerization in heterogeneous media, [96,97] microwave-assisted polymerization, [65,98,99] industrial prospects for RDRP, [100,…”
Section: Introductionmentioning
confidence: 99%
“…[62] The process is also given substantial coverage in most recent reviews that, in part, relate to polymer synthesis, living or controlled polymerization or novel architectures. Some of those that include significant mention of RAFT polymerization include reviews on RDRP, [63] mechanism and reagent design, [11,64,65] click chemistry, [66][67][68][69][70][71][72] synthesis of telechelics, [73] the polymerization of carbazole-containing monomers, [74] N-vinyl-1,2,3-triazoles, [75] N-vinyl heterocycles, [76] fluoro-monomers, [77] and glycomonomers, [78][79][80] synthesis of metallopolymers, [81] conjugated block copolymers, [82] dye-functionalized polymers, [83] stimuliresponsive polymers, [84,85] complex architectures, [86,87] polyolefin blocks, [88] biopolymer-polymer conjugates and bioapplications, [59,[89][90][91][92][93] polysaccharide modification, [94,95] polymerization in heterogeneous media, [96,97] microwave-assisted polymerization, [65,98,99] industrial prospects for RDRP, [100,…”
Section: Introductionmentioning
confidence: 99%
“…There are additionally many more reviews which deal more general with RDRP but which, nonetheless, have a substantial section on RAFT polymerization. Some of those that include significant mention of RAFT polymerization include general reviews on RDRP (102), RDRP mechanisms and reagent design (103,104), click chemistry (105-109), photo-initiated RDRP (110) synthesis of telechelics (111), polymerization of carbazole-containing monomers (112), N-vinyl-1,2,3-triazoles (113), N-vinyl heterocycles (114), glycomonomers (115,116), synthesis of metallopolymers (117), conjugated block copolymers (118), dye-functionalized polymers (119), stimuli responsive polymers (120)(121)(122), complex architectures (123), biopolymer-polymer conjugates and bioapplications (97,(124)(125)(126)(127)(128)(129), polysaccharide modification (130), polymerization in heterogeneous media (131), microwave-assisted polymerization (132,133) and industrial prospects for RDRP (134).…”
Section: Recent (2011-2014) Applications Of Raft Polymerization At Csiromentioning
confidence: 99%
“…15). This synthetic method, now known as catalyst transfer polycondensation (CTP) (13)(14)(15)(16)(17)(18)(19), paved the way for synthesizing all-conjugated diblock copolymers (20)(21)(22)(23)(24)(25)(26)(27), star polymers (28,29) and surface-grafted polymers (30)(31)(32). CTP also provides access to all-conjugated gradient sequence copolymers (33)(34)(35)(36).…”
Section: Introductionmentioning
confidence: 99%