Preparation of syndiotactic polystyrene based diblock copolymer by metallocene-catalyst-mediated living polymerization reaction

碩士 === 國立中正大學 === 化學工程所 === 94 === This work reports our results on the preparation of sPS-based block copolymers by metallocene catalyst mediated block polymerization of butadiene and styrene. The first polybutadiene block was synthesized by using CpTiCl3/MAO catalyst to mediate the living polymeri...

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Bibliographic Details
Main Authors: Yi-fang Huang, 黃怡芳
Other Authors: Jin-cheng Tsai
Format: Others
Language:zh-TW
Published: 2006
Online Access:http://ndltd.ncl.edu.tw/handle/41537717657783271353
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Summary:碩士 === 國立中正大學 === 化學工程所 === 94 === This work reports our results on the preparation of sPS-based block copolymers by metallocene catalyst mediated block polymerization of butadiene and styrene. The first polybutadiene block was synthesized by using CpTiCl3/MAO catalyst to mediate the living polymerization of butadiene.Subsequently, para-methylstyrene or styrene monomers can be added for constructing the second block(sPS or sPMS). In this study, novel diblock copolymers including PB-b-sPMS and PB-b-sPS have been successfully prepared using the unprecedented living metallocene catalyst system.Our results indicate sPS or sPMS polymerization can be living at low temperature. Consequently, novel diblock copolymers including PB-b-sPMS and PB-b-sPS have been successfully prepared by this novel synthetic route. We also demonstrate that the resulting PB-b-sPMS and PB-b-sPS can be used to undergo ozonization reaction,and this leads to generation of the result in aldehyde end-capped sPMS and sPS .Consequently,undergo coupling reaction in the presence of living anionic polymer(P2VP or aPS) to provide the novel sPMS-b-P2VP and sPS-b-aPS. The resulting block copolymers have been characterized by GPC, 1H and 13C NMR to reveal that the styrene block still maintains a syndiotactic architecture.