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Cationic Copolymerization of Isobutylene with 4-Vinylbenzenecyclobutylene: Characteristics and Mechanisms

机译:异丁烯与4-乙烯基苯环丁烯的阳离子共聚:特征和机理

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摘要

A random copolymer of isobutylene (IB) and 4-vinylbenzenecyclobutylene (4-VBCB) was synthesized by cationic polymerization at −80 °C using 2-chloro-2,4,4-trimethylpentane (TMPCl) as initiator. The laws of copolymerization were investigated by changing the feed quantities of 4-VBCB. The molecular weight of the copolymer decreased, and its molecular weight distribution (MWD) increased with increasing 4-VBCB content. We proposed a possible copolymerization mechanism behind the increase in the chain transfer reaction to 4-VBCB with increasing of feed quantities of 4-VBCB. The thermal properties of the copolymers were studied by solid-phase heating and crosslinking. After crosslinking, the decomposition and glass transition temperatures ( ) of the copolymer increased, the network structure that formed did not break when reheated, and the mechanical properties remarkably improved.
机译:使用2-氯-2,4,4-三甲基戊烷(TMPC1)作为引发剂,在-80°C下通过阳离子聚合合成了异丁烯(IB)和4-乙烯基苯环丁烯(4-VBCB)的无规共聚物。通过改变4-VBCB的进料量来研究共聚规律。随着4-VBCB含量的增加,共聚物的分子量降低,分子量分布(MWD)增加。我们提出了随着4-VBCB的进料量的增加,向4-VBCB的链转移反应增加的可能的共聚机理。通过固相加热和交联研究了共聚物的热性能。交联后,共聚物的分解温度和玻璃化转变温度()增加,形成的网络结构在重新加热时不会破坏,并且机械性能得到显着改善。

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