CHAPTER 6. Bimetallic Complex Mediated Meso-epoxide Desymmetrization Copolymerization

Xiao‐Bing Lu
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Abstract

The desymmetrization copolymerization of meso-epoxides with achiral nucleophiles mediated by chiral reagents or catalysts is an efficacious synthetic strategy for preparing optically active polymers with two contiguous (R,R)- or (S,S)-configurational stereogenic centers. This chapter describes in general terms the catalytic polymerization methodology regarding the use of meso-epoxides in desymmetrization copolymerization promoted by multichiral induction and bimetallic synergistic effects for achieving both high activity and enantioselectivity. The major focus will be on the most successful catalyst systems based on enantiopure bimetallic complexes in recent years and the preferred chiral ligand frameworks leading to elevated reactivity and enantioselectivity in meso-epoxide desymmetrization copolymerization reactions, including enantioselective synthesis of polycarbonates from carbon dioxide, poly(thiocarbonate)s from carbonyl sulfide, and polyesters from cyclic anhydrides.
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第六章。双金属配合物介导中环氧化物脱对称共聚
在手性试剂或催化剂的催化下,介手性环氧化物与非手性亲核试剂的反对称共聚是制备具有两个连续(R,R)-或(S,S)-构型立体中心的光学活性聚合物的有效合成策略。本章概述了催化聚合方法中使用中环氧化物通过多手性诱导和双金属协同效应促进去对称共聚,以实现高活性和对映体选择性。重点将是近年来最成功的基于对映纯双金属配合物的催化剂体系,以及在中环氧化物脱对称共聚反应中提高反应活性和对映选择性的首选手性配体框架,包括二氧化碳对映选择性合成聚碳酸酯、羰基硫化物合成聚硫代碳酸酯和环酸酐合成聚酯。
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