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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Poly[(styrene-co-p-methylstyrene)-b-isobutylene-b-(styrene-co-p-methylstyrene)]triblock copolymers.1.Synthesis and characterization
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Poly[(styrene-co-p-methylstyrene)-b-isobutylene-b-(styrene-co-p-methylstyrene)]triblock copolymers.1.Synthesis and characterization

机译:聚[(苯乙烯-对-甲基苯乙烯)-b-异丁烯-b-(苯乙烯-对-甲基苯乙烯)]三嵌段共聚物。1。合成与表征

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摘要

The synthesis of poly(isobutylene)(PIB)-based triblock copolymers having copolymer end blocks containing styrene and p-me thy 1 styrene(pMSt)repeat units was investigated in an attempt to minimize chain-coupling reactions that occur at the 4-position on styrene repeat units during end block polymerization.Model end block copolymerizations using varying feed ratios of styrene and pMSt were conducted,and it was determined by ~1H NMR analysis that the addition of pMSt to the living chain end was favored slightly at low conversion.However,DSC revealed a single T_g that increased with increasing pMSt content verifying the absence of blockiness in the microstructure.Poly[(styrene-co-pMSt)-b-isobutylene-b-(styrene-co-pMSt)]triblock copolymers were synthesized using varying feed ratios of styrene and pMSt.The rate of end block propagation increased with increasing pMSt in the feed,and the end block copolymerizations initiated by PIB displayed longer reaction times and more curvature in their first order plots than did the model end block copolymerizations initiated by TMPC1.This effect was attributed to lower ionization equilibrium constant and higher degree of termination caused by the more non-polar local reaction medium provided by the PIB center blocks in block copolymerization.GPC analysis of the final BCPs revealed a decrease in a high molecular weight peak representing the chain-coupled product as the concentration of pMSt in the feed was increased.
机译:为了使在4位发生的链偶联反应减至最小,研究了具有共聚物端嵌段的聚(异丁烯)(PIB)基三嵌段共聚物的合成,该嵌段含有苯乙烯和对位1苯乙烯(pMSt)重复单元。采用不同的苯乙烯和pMSt进料比进行模型端嵌段共聚,并通过〜1H NMR分析确定,在低转化率下,向活性链末端添加pMSt稍微有利。然而,DSC显示单个T_g随pMSt含量的增加而增加,这证明了微观结构中不存在嵌段性。使用不同的苯乙烯和pMSt进料比。随着进料中pMSt的增加,端嵌段的扩散速率增加,并且PIB引发的端嵌段共聚反应显示出更长的反应时间和更大的曲率与TMPC1引发的模型端嵌段共聚反应相比,第一个阶次图的出现是由于PIB中心嵌段在嵌段共聚中提供了更多非极性的局部反应介质,导致电离平衡常数降低和终止度更高。最终的BCP中有7份显示随着进料中pMSt浓度的增加,代表链偶联产物的高分子量峰减少。

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