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Nonstoichiometric Suzuki-Miyaura Polycondensation for the Synthesis of Aromatic Polymers

机译:非辛格计量铃木 - 宫瓜龙芳族聚合物合成

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摘要

This mini-review deals with the nonstoichiometric Suzuki-Miyaura polycondensation of excess dibromoarylene with arylenediboronic acid (ester) in the presence of t-Bu3PPd precatalyst and CsF/18-crown-6 as a base. Since t-Bu3PPd(0), generated from precatalyst with the assistance of base, has a propensity for intramolecular catalyst transfer on the pi-electron face of aromatics, successive reaction of dibromoarylene with 2 equivalents of arylenediboronic acid (ester) takes place through intramolecular catalyst transfer of t-Bu3PPd(0) on dibromoarylene, affording high-molecular-weight polymer, even though an excess of dibromoarylene is used. High-molecular-weight poly(tetraalkoxy-substituted stilbene), polyphenylene, polyfluorene, poly(thiophene-alt-phenylene), poly(fluorene-alt-benzthiadiazole), poly(phenylene-alt-benzothiadiazle), poly(cyclopentadithiophene-alt-benzothiadiazole), and polyphenylene containing C equivalent to C, N=N, CH2, CO, N-Bu, O, SO2 in the backbone have been obtained under nonstoichiometric conditions. The obtained polymers have a boronic acid (ester) moiety at both ends, which can be converted to other functional groups by means of Suzuki-Miyaura coupling reaction with another reagent, oxidation, bromination, and so on. In the synthesis of poly(tetraalkoxy-substituted stilbene), the abnormal nonstoichiometric polycondensation, affording high-molecular-weight polymer with a boronic acid ester moiety at both ends, can be switched to normal nonstoichiometric polycondensation, affording low-molecular-weight polymer with bromine at both ends, simply by the addition of unsubstituted stilbene, which promotes intermolecular catalyst transfer due to catalyst trapping. When at least one of the two monomers has a kinked structure, such as m-dibromophenylene or m-phenylenediboronic acid (ester), many kinds of cyclic polymers can be selectively obtained even under nonstoichiometric conditions.
机译:本文主要介绍了在t-Bu3PPd预催化剂和CsF/18-crown-6为碱的条件下,过量二溴丙烯与芳基二硼酸(酯)的非化学计量Suzuki Miyaura缩聚反应。由于t-Bu3Pd(0)在碱的帮助下由预催化剂生成,具有在芳烃的pi电子面上进行分子内催化剂转移的倾向,二溴代芳烃与2当量的芳基二硼酸(酯)的连续反应通过t-Bu3Pd(0)在二溴代芳烃上的分子内催化剂转移发生,提供高分子量聚合物,尽管使用了过量的二溴丙烯。在非化学计量条件下,获得了高分子量聚(四烷氧基取代二苯乙烯)、聚苯、聚芴、聚(噻吩替代苯撑)、聚(芴替代苯并噻二唑)、聚(苯撑替代苯并噻二唑)、聚(环戊二噻吩替代苯并噻二唑)和主链中含有相当于C、N=N、CH2、CO、N-Bu、O、SO2的C的聚苯。所得聚合物的两端都有硼酸(酯)部分,可通过铃木宫村与另一试剂的偶联反应、氧化、溴化等将其转化为其他官能团。在聚(四烷氧基取代的二苯乙烯)的合成中,非化学计量缩聚反应(在两端提供含硼酸酯部分的高分子量聚合物)可以切换到正常的非化学计量缩聚反应,通过添加未取代的二苯乙烯,在两端提供含溴的低分子量聚合物,由于催化剂被捕获,促进了分子间催化剂转移。当两种单体中至少有一种具有扭结结构时,例如间二溴苯基或间苯二硼酸(酯),即使在非化学计量条件下也可以选择性地获得多种环状聚合物。

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  • 来源
    《Polymer science, Series C》 |2020年第2期|共12页
  • 作者单位

    Kanagawa Univ Dept Mat &

    Life Chem Kanagawa Ku Yokohama Kanagawa 2218686 Japan;

    Kanagawa Univ Dept Mat &

    Life Chem Kanagawa Ku Yokohama Kanagawa 2218686 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
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