Synthesis of SAN-PB-SAN Triblock Copolymers via a “Living” Copolymerization with Macro-Photoiniferters
E. Kroeze, Bart de Boer, Gerrit ten Brinke, Georges Hadziioannou
Abstract
E. Kroeze, Bart de Boer, Gerrit ten Brinke, Georges Hadziioannou
Abstract
A technique is described for the synthesis of poly((styrene- co -acrylonitrile)- block -butadiene- block -(styrene- co -acrylonitrile)) (SAN-PB-SAN) triblock copolymers through polybutadiene-based photoiniferters. Dihydroxy- and dicarboxy-terminated polybutadienes were transformed into the chloro-terminated compounds, which were subsequently reacted with sodium diethyldithiocarbamate into macro-photoiniferters. The dicarboxy-terminated polybutadiene was found to produce unstable dithiocarbamate end groups because of loss of CS 2 . The dihydroxy-terminated polybutadiene ( M n = 3300 g/mol) was successfully transformed into a macro-photoiniferter, which was used as a photoinitiator for the “living” copolymerization of styrene/acrylonitrile mixtures to obtain the title compounds. By variation of the polymerization time and macroiniferter concentration, the vinyl sequence length and composition of the triblock copolymers could be regulated. The macroiniferters and block copolymers were characterized by GPC, elemental analysis, and 1 H NMR.
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A technique is described for the synthesis of poly((styrene- co -acrylonitrile)- block -butadiene- block -(styrene- co -acrylonitrile)) (SAN-PB-SAN) triblock copolymers through polybutadiene-based photoiniferters. Dihydroxy- and dicarboxy-terminated polybutadienes were transformed into the chloro-terminated compounds, which were subsequently reacted with sodium diethyldithiocarbamate into macro-photoiniferters. The dicarboxy-terminated polybutadiene was found to produce unstable dithiocarbamate end groups because of loss of CS 2 . The dihydroxy-terminated polybutadiene ( M n = 3300 g/mol) was successfully transformed into a macro-photoiniferter, which was used as a photoinitiator for the “living” copolymerization of styrene/acrylonitrile mixtures to obtain the title compounds. By variation of the polymerization time and macroiniferter concentration, the vinyl sequence length and composition of the triblock copolymers could be regulated. The macroiniferters and block copolymers were characterized by GPC, elemental analysis, and 1 H NMR.
Key concepts: Copolymer, Polybutadiene, Acrylonitrile, Polymer chemistry, Styrene, Polymerization, Materials science, Dithiocarbamate