首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Importance of active-site reactivity and reaction conditions in the preparation of hyperbranched polymers by self-condensing vinyl polymerization: Highly branched vs. linear poly[4-(chloromethyl)styrene] by metal-catalyzed 'living' radical polymeriza
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Importance of active-site reactivity and reaction conditions in the preparation of hyperbranched polymers by self-condensing vinyl polymerization: Highly branched vs. linear poly[4-(chloromethyl)styrene] by metal-catalyzed 'living' radical polymeriza

机译:活性位反应性和反应条件在通过自缩合乙烯基聚合制备超支化聚合物中的重要性:通过金属催化的“活”自由基聚合反应,高度支化与线性聚[4-(氯甲基)苯乙烯]

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The self-condensing vinyl polymerization of 4-(chloromethyl) styrene using metal-catalyzed living radical polymerization catalyzed by the complex CuCl/2,2'-bipyridyl has been attempted. Given the unequal reactivity of the two potential propagating species in this system, a variety of polymerization conditions were tested to optimize the extent of branching in the products. Typical reaction conditions included polymerization in the bulk, or preferably in chlorobenzene solution, with catalyst to monomer ratios in the range 0.01-0.30, temperatures of 100-130 degrees C, and reaction times from 0.1 to 32 h. Polymers with weight average molecular weights between 3 x 10(3) and 1.6 x 10(5) and different extents of branching are formed as evidenced by size-exclusion chromatography, light scattering, and NMR analysis of the reaction products. The influence of reaction conditions on the molecular weight and branching of the resulting polymers is discussed in detail. In sharp contrast to an earlier report, the weight of evidence suggests that, at a catalyst to monomer ratio of 0.01, an almost linear polymer is obtained, while a high catalyst to monomer ratio favors the formation of a branched structure. As a result of the unequal reactivity of the primary and secondary benzylic halide reactive sites, growth occurs by a modified self-condensing vinyl polymerization mechanism that involves incorporation of the largely linear vinyl-terminated fragments formed early on in the polymerization into the vinyl polymer, to afford an irregularly branched structure. Chemical transformations involving the numerous benzylic halide functionalities of the highly branched polymer have been investigated. (C) 1998 John Wiley & Sons, Inc. [References: 55]
机译:已尝试使用由CuCl / 2,2'-联吡啶基络合物催化的金属催化的活性自由基聚合反应进行4-(氯甲基)苯乙烯的自缩合乙烯基聚合反应。考虑到该系统中两种潜在的繁殖物种的反应活性不平等,测试了各种聚合条件以优化产品中的支化程度。典型的反应条件包括本体或优选在氯苯溶液中的聚合,催化剂与单体的比例为0.01-0.30,温度为100-130℃,反应时间为0.1-32 h。重均分子量在3 x 10(3)和1.6 x 10(5)之间且支化程度不同的聚合物形成,这通过尺寸排阻色谱,光散射和反应产物的NMR分析证明。详细讨论了反应条件对所得聚合物的分子量和支化的影响。与先前的报告形成鲜明对比的是,大量证据表明,催化剂与单体的比例为0.01时,可获得几乎线性的聚合物,而催化剂与单体的比例较高则有利于形成支链结构。由于一级和二级苄基卤化物反应位点的反应性不平等,生长是通过改性的自缩合乙烯基聚合机理发生的,该机理涉及将聚合初期形成的大部分线性乙烯基末端片段结合到乙烯基聚合物中,提供不规则的分支结构。已经研究了涉及高度支化聚合物的许多苄基卤化物官能团的化学转化。 (C)1998 John Wiley&Sons,Inc. [参考:55]

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