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Improvement in epoxy adhesives by introducing thiirane groups Investigation of reaction mechanism based on the model reaction

机译:基于模型反应的反应机理研究,通过引入环氧树脂粘合剂的改善

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摘要

The ring opening reactions of phenyl glycidyl ether (PGE) and/or phenoxymethylthiirane (PT) and primary amines were investigated. Aniline, cyclohexylamine and n-octylamine were used as primary amines. The initial reaction rate of PT with aniline was larger than that of PGE with aniline, but PT did not react quantitatively due to existence of an equlibrium reaction in the former system. The reaction of PGE with aniline proceeded via addition and produced the 2:1 adduct as a final product, whereas addition and oligomerization reactions occurred competitively in the reation of PT with aniline. The initial reaction of PGE was accelerated in the presence of PT and vice versa, and PT reacted quantitatively. These results indicated that the reaction of PGE was accelerated by thiolate anion and that the equilibrium reaction was retarded by PGE. The reaction behaviors of three-membered rings with other primary amines were similar to those with aniline. The improvement in the curing rate of epoxy adhesives by introducing thiirane groups could be explained in terms of the synergistic effect on enhancement in ring-opening reactivities of three-membered rings.
机译:苯基缩水甘油基醚(PGE)和/或phenoxymethylthiirane(PT)和伯胺的开环反应进行了研究。苯胺,环己胺和正辛胺用作伯胺。与苯胺PT的初始反应速率比PGE与苯胺的大,但PT没有由于在前者系统中的equlibrium反应的存在定量反应。 PGE的与苯胺反应经由加料进行并且所产生的2:1加成物作为最终产品,而加法和低聚反应在PT的reation与苯胺发生竞争。 PGE的初始反应在PT和副的存在加速反之亦然,和PT定量反应。这些结果表明,PGE的反应通过硫醇盐阴离子和平衡反应通过PGE延迟加速。三元环与其他伯胺的反应行为的那些相似与苯胺。通过引入硫杂丙环基团中的环氧粘合剂的固化速度的提高可以在三种元环的开环反应性上的增强的协同效应来解释。

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  • 来源
    《ネットワ-クポリマ- 》 |2000年第1期| 共8页
  • 作者单位

    Departmen of Applied chemistry Faculty of Engineering Yokohama National Universtiy (79-5 Tokiwadai Hodogaya-ku Yokohama-shi 240-0067 Japan);

    Departmen of Applied chemistry Faculty of Engineering Yokohama National Universtiy (79-5 Tokiwadai Hodogaya-ku Yokohama-shi 240-0067 Japan);

    Departmen of Applied chemistry Faculty of Engineering Yokohama National Universtiy (79-5 Tokiwadai Hodogaya-ku Yokohama-shi 240-0067 Japan);

    Research and Development Center Advanced Materials Laboratory Yokohama Rubber Co. (2-1 Oiwake Hiratsuka-shi 254-8601 Japan);

    Research and Development Center Advanced Materials Laboratory Yokohama Rubber Co. (2-1 Oiwake Hiratsuka-shi 254-8601 Japan);

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  • 原文格式 PDF
  • 正文语种 jpn
  • 中图分类 高分子化合物工业(高聚物工业) ;
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