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CH 活化作为共轭聚合物合成的捷径。

CH Activation as a Shortcut to Conjugated Polymer Synthesis.

机构信息

Université Laval, Québec City, Québec, G1V 0A6, Canada.

出版信息

Macromol Rapid Commun. 2019 Jan;40(1):e1800512. doi: 10.1002/marc.201800512. Epub 2018 Sep 10.

Abstract

Direct (hetero)arylation polymerization exploits the palladium-catalyzed activation of aromatic CH bonds for the atom-economical synthesis of conjugated polymers for a wide range of applications. This account outlines how direct arylation methodologies overcome many of the limitations of contemporary polymerization techniques at both the research and production scale, and explains how monomer design and reaction conditions must be tailored to ensure high polymer molecular weight, yield, and structural integrity. Current research aims to improve further this reaction's profile as a sustainable methodology while at the same time making it competitive with the Migita-Stille and Miyaura-Suzuki polymerizations both in scope of accessible structures and synthetic efficiency. This feature article charts the recent developments and future directions of CH activation research as it moves toward becoming at once an industrially feasible, environmentally friendly, and synthetically powerful polymerization technique.

摘要

直接(杂)芳基化聚合利用钯催化的芳族 CH 键活化,实现了广泛应用的共轭聚合物的原子经济性合成。本综述概述了直接芳基化方法如何克服当代聚合技术在研究和生产规模上的许多限制,并解释了如何设计单体和反应条件以确保高分子的分子量、产率和结构完整性。目前的研究旨在进一步改善该反应作为可持续方法的特点,同时使其在可及结构和合成效率方面与 Migita-Stille 和 Miyaura-Suzuki 聚合具有竞争力。本文综述了 CH 活化研究的最新进展和未来方向,因为它正在成为一种工业可行、环境友好和合成强大的聚合技术。

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