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Library of Stereoregular Polythioesters for Stereocomplex Formation Enabled by Isomerization‐Driven Cationic Ring‐Opening Polymerization

作者:Pengjun Yuan, Yongliang Xia, Xi Zhang, Yangyang Sun, Yifeng Chen, Miao Hong · 发表于:Angewandte Chemie International Edition · 年份:2025 · DOI:10.1002/anie.202501485 · 被引用次数:6 · 研究领域:biodegradable polymer synthesis and properties、Carbon dioxide utilization in catalysis、Synthetic Organic Chemistry Methods

Abstract Supramolecular stereocomplexation is an important tool to advance sustainable polymers, and oxygen‐containing polymers represent the most widely studied materials for stereocomplexation. However, the sulfur‐containing analogues, a newly emerged class of sustainable polymers, remain essentially unexplored because of a significant challenge encountered in the synthesis of stereoregular polymers and relatively low supramolecular interaction. In this contribution, by the utilization of [Et 3 O] + [B(C 6 F 5 ) 4 ] − as a metal‐free cationic initiator, controlled isomerization‐driven ring‐opening polymerizations (IROPs) of nine examples of chiral five‐membered thionolactones have been achieved with free or suppressed racemization via unique monomer‐stabilized S N 2 propagation mechanism, which allows an unprecedented access to a library of new stereoregular polythioesters with high isotacticities (80.0%–99.5%). The investigations into structure–stereocomplexation relationship led to the disclosure of two new polythioester stereocomplexes with high melting temperatures (117.0–161.0 °C). The fundamental aspects of stereocomplex formation mechanism and critical factors that affect stereocomplexed ability have also been revealed.