环聚合中的手性诱导

K. Yokota, T. Kakuchi, T. Uesaka, M. Obata
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引用次数: 7

摘要

综述了基于环聚合和环聚合构型排列的主链手性光学活性聚合物的合成。具有手性扭转的模板在二乙烯基单体分子内环化过程中将手性传递到主链上,形成对映体外消旋环单元。不对称环聚合产生的聚合物即使在模板断裂后仍具有光学活性。采用对映选择性环聚合方法,在少量手性引发剂的作用下,由非手性单体合成了具有光学活性的聚合物。控制环构元立体化学的环聚合是不对称聚合的有效手段之一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chirality induction in cyclopolymerization

An overview of the synthesis of optically active polymers due to main-chain chirality based on the configurational arrangement in cyclopolymerization and cyclocopolymerization is presented. The template having chiral twist transmitted its chirality to the main chain in the intramolecular cyclization of divinyl monomers to form the enantiomeric racemo cyclic units. The asymmetric cyclocopolymerization produced the polymers which were optically active even after cleaving the template. The synthesis of optically active polymers from achiral monomers using a slight amount of chiral initiator was achieved by the enantioselective cyclopolymerization. The cyclopolymerization capable of controlling stereochemistry of the cyclic constitutional units was one of useful means for asymmetric polymerization.

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