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首页> 外文期刊>Angewandte Chemie >S-Carboxyanhydrides: Ultrafast and Selective Ring-Opening Polymerizations Towards Well-defined Functionalized Polythioesters
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S-Carboxyanhydrides: Ultrafast and Selective Ring-Opening Polymerizations Towards Well-defined Functionalized Polythioesters

机译:S-羧酐:超快和选择性开环聚合朝向明确定义的官能化的聚硫代酯

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摘要

Aliphatic polythioesters are popular polymers because of their appealing performance such as metal coordination ability, high refractive indices, and biodegradability. One of the most powerful approaches for generating these polymers is the ring-opening polymerization (ROP) of cyclic monomers. However, the synthesis of precisely controlled polythioesters via ROP of thiolactones still faces formidable challenges, including the minimal functional diversity of available thiolactone monomers, as well as inevitable transthioesterification side reactions. Here we introduce a hyperactive class of S-carboxyanhydride (SCA) monomers derived from amino acids that are significantly more reactive than thiolactones for ultrafast and selective ROP. Inclusion of the initiator PPNOBz ([PPN]=bis(triphenylphosphine)-iminium) with chain transfer agent benzoic acid, the polymerizations that can be operated in open vessels reach complete conversion within minutes (1-2 min) at room temperature, yielding polythioesters with predictable molecular weight, low dispersities, retained stereoregularity and chemical recyclability. Most fascinating are the functionalized SCAs that allow the incorporating of functional groups along the polythioester chain and thus finely tune their physicochemical performance. Computational studies were carried out to explore the origins of the distinctive rapidity and exquisite selectivity of the polymerizations, offering mechanistic insight and explaining why high polymerizability of SCA monomer is able to facilitate exquisitely selective ring-opening for enchainment over competing transthioesterification and backbiting reactions.
机译:脂肪族聚硫酯是一种很受欢迎的聚合物,因为它们具有诱人的性能,如金属配位能力、高折射率和生物降解性。生成这些聚合物的最有效方法之一是环状单体的开环聚合(ROP)。然而,通过硫内酯的ROP合成精确控制的聚硫酯仍然面临着严峻的挑战,包括现有硫内酯单体的最小功能多样性,以及不可避免的转硫酯化副反应。在这里,我们介绍了一类超活性的S-羧酸酐(SCA)单体,其来源于氨基酸,对于超快和选择性ROP而言,其活性明显高于硫内酯。将引发剂PPNOBz([PPN]=双(三苯基膦)-亚胺)与链转移剂苯甲酸包合,可在开放容器中操作的聚合在室温下在几分钟(1-2分钟)内达到完全转化,生成具有可预测分子量、低分散性、保留立体规整性和化学回收性的聚硫酯。最吸引人的是功能化SCA,它允许沿着聚硫酯链结合官能团,从而微调其物理化学性能。进行了计算研究,以探索聚合反应独特的快速性和高选择性的起源,提供了机理上的见解,并解释了为什么SCA单体的高聚合性能够促进精细选择性开环,从而与竞争性的反硫酯化反应和backbiting反应形成环合。

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