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使用不止一种活性聚合方法的聚合物合成。

Polymer Synthesis with More Than One Form of Living Polymerization Method.

机构信息

Beijing Advanced Innovation Center for Soft Matter Science and Engineering, College of Material Science and Engineering, Beijing University of Chemical Technology, Beijing, 100029, China.

School of Chemistry, Monash University, Clayton Campus, VIC, 3800, Australia.

出版信息

Macromol Rapid Commun. 2018 Oct;39(20):e1800479. doi: 10.1002/marc.201800479. Epub 2018 Sep 20.

Abstract

Controlled radical polymerization (CRP) or controlled/living radical polymerization has revolutionized the polymer industry as a tool for the preparation of a wide variety of polymers. This process enables the preparation of polymers with good control of molecular weight, narrow polydispersity, and a range of architectures including block and graft copolymers, star polymers, and other functional polymers. The mechanistic transformation reaction provides a great opportunity to tune chemical and physical properties of copolymers. It can be applied to combine different homopolymers using post-modification techniques or by the use of a dual initiator, allowing the combination of mechanistically distinct polymerization reactions. This review will cover CRP transformations including the synthesis of block copolymers with both linear structures (AB, ABA, (AB) , multiblocks, etc.) and branched macromolecular architectures (graft, miktoarm star, and dendritic-like), which are obtained by a combination of more than one form of living polymerization reaction.

摘要

可控自由基聚合(CRP)或可控/活性自由基聚合已经彻底改变了聚合物工业,成为制备各种聚合物的工具。该工艺可制备分子量控制良好、多分散性窄、具有多种结构的聚合物,包括嵌段和接枝共聚物、星型聚合物和其他功能聚合物。机理转化反应为调节共聚物的化学和物理性质提供了很好的机会。它可以用于通过后修饰技术或使用双引发剂来组合不同的均聚物,允许将具有不同机理的聚合反应组合在一起。本综述将涵盖 CRP 转化,包括具有线性结构(AB、ABA、(AB)n、多嵌段等)和支化大分子结构(接枝、星型、树枝状等)的嵌段共聚物的合成,这些共聚物是通过组合一种以上形式的活性聚合反应得到的。

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