首页> 外文期刊>European Polymer Journal >Further discussion of steric effect on the radical polymerization of triallyl isocyanurate as compared with its isomer triallyl cyanurate: polymerization and copolymerization of corresponding trimethallyl compounds
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Further discussion of steric effect on the radical polymerization of triallyl isocyanurate as compared with its isomer triallyl cyanurate: polymerization and copolymerization of corresponding trimethallyl compounds

机译:与异氰脲基三烯丙基氰尿酸酯的异构体相比,对三烯丙基异氰脲酸酯自由基聚合的空间效应的进一步讨论:相应的三甲基烯丙基化合物的聚合和共聚

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摘要

As part of our continuing studies concerned with the radical polymerization of multiallyl compounds, the polymerization behavior of triallyl isocyanurate (TAIC) was compared in detail with those of its isomer triallyl cyanurate (TAC). It was found by chance that the primary chain length of the TAIC polymer obtained was quite high compared with TAC polymerization. This is ascribed to the reduced occurrence of monomer chain transfer characteristic of the polymerization of allyl compounds due to the steric effect on transition state formation by the bulky side-chain group, providing an interesting example of reaction control in radical polymerization. In order to discuss in more detail this kind of the specific polymerization behavior of TAIC, this work deals with the polymerization and copolymerization of corresponding trimethallyl compounds including trimethallyl isocyanurate (TMAIC) and trimethallyl cyanurate (TMAC) having additional allylic hydrogens as #alpha#-methyl group in which no steric hindrance may occur for the transition state formation of monomer chain transfer reaction. TMAIC showed almost no homopolymerizability, while only slightly reduced polymerizability was observed for TMAC as compared with TAC. Specificity of TAIC polymerization was almost lost by copolymerizing about 20 mol% of TAC or TMAC.
机译:作为我们有关多烯丙基化合物自由基聚合的持续研究的一部分,将三烯丙基异氰脲酸酯(TAIC)的聚合行为与其异构体三烯丙基氰脲酸酯(TAC)的聚合行为进行了详细比较。偶然地发现,与TAC聚合相比,所获得的TAIC聚合物的主链长度相当高。这归因于由于庞大的侧链基团对过渡态形成的空间效应,烯丙基化合物聚合的单体链转移特征的发生减少,从而提供了自由基聚合反应控制的有趣实例。为了更详细地讨论TAIC的这种特定的聚合行为,这项工作涉及相应的三甲基烯丙基化合物的聚合和共聚,包括三甲基烯丙基异氰脲酸酯(TMAIC)和三甲基烯丙基氰尿酸酯(TMAC),具有额外的烯丙基氢作为#alpha#-对于单体链转移反应的过渡态形成而言,其中不会出现位阻的甲基。 TMAIC几乎没有显示出均聚性,而与TAC相比,仅观察到TMAC的聚合性略有降低。通过使约20mol%的TAC或TMAC共聚,TAIC聚合的特异性几乎丧失。

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