Dynamic Kinetic Resolution Polymerization: Synthesis of Chiral Polythioesters from Racemic Monomers

K Kun Li (Department of Materials Science, Institute of Pure and Applied Sciences, University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Ibaraki 305-8573, Japan) Y Yue Yang M Min Xie Q Qing Cao J Jing‐Liang Cheng (Key Laboratory of Green Chemistry and Technology of Ministry of Education College of Chemistry Sichuan University Chengdu 610064 P. R. China) L Liang‐Wen Feng (Key Laboratory of Green Chemistry & Technology Ministry of Education College of Chemistry Sichuan University Chengdu China) D Da‐Gang Yu (Key Laboratory of Green Chemistry & Technology of Ministry of Education College of Chemistry Sichuan University Chengdu P. R. China) Z Zhongzheng Cai (National Engineering Laboratory of Eco-Friendly Polymeric Materials (Sichuan), State Key Laboratory of Advanced Polymer Materials, College of Chemistry, Sichuan University, 29 Wangjiang Rd, Chengdu 610064, P. R. China) J Jian‐Bo Zhu (National Engineering Laboratory of Eco‐Friendly Polymeric Materials (Sichuan) State Key Laboratory of Advanced Polymer Materials College of Chemistry Sichuan University Chengdu P. R. China)

Abstract

Abstract Chiral polymers are fundamentally important and interesting in nature and scientific research. For the preparation of chiral polymers, the standard kinetic resolution polymerization (KRP) of racemic monomers could only afford a 50% yield of chiral polymers with 50% unreacted monomer leftover. In this contribution, we have developed a dynamic kinetic resolution polymerization (DKRP) strategy to synthesize chiral polymers with complete conversion and improved isoselectivity from racemic monomers. A “Lewis acid/base‐SalBinamAl” catalytic system was employed to achieve efficient DKRP of thiolactones with full monomer conversion and allowed access to chiral polythioesters with perfectly isotacticities ( P m up to 0.99). The formation of chiral polythioesters was confirmed by circular dichroism spectroscopy and optical rotation testing. Detailed kinetic investigation supported a DKRP mechanism. This work represented the very first example of dynamic kinetic resolution ring‐opening polymerization and could provide a new conceptual strategy to guide and inspire the synthesis of chiral polymers from racemic monomers.

Article Details

Volume / Issue Vol. 64, Issue 51
Published December 15, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (9)

K

Kun Li

Department of Materials Science, Institute of Pure and Applied Sciences, University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Ibaraki 305-8573, Japan

Y

Yue Yang

M

Min Xie

Q

Qing Cao

J

Jing‐Liang Cheng

Key Laboratory of Green Chemistry and Technology of Ministry of Education College of Chemistry Sichuan University Chengdu 610064 P. R. China

L

Liang‐Wen Feng

Key Laboratory of Green Chemistry & Technology Ministry of Education College of Chemistry Sichuan University Chengdu China

D

Da‐Gang Yu

Key Laboratory of Green Chemistry & Technology of Ministry of Education College of Chemistry Sichuan University Chengdu P. R. China

Z

Zhongzheng Cai

National Engineering Laboratory of Eco-Friendly Polymeric Materials (Sichuan), State Key Laboratory of Advanced Polymer Materials, College of Chemistry, Sichuan University, 29 Wangjiang Rd, Chengdu 610064, P. R. China

J

Jian‐Bo Zhu

National Engineering Laboratory of Eco‐Friendly Polymeric Materials (Sichuan) State Key Laboratory of Advanced Polymer Materials College of Chemistry Sichuan University Chengdu P. R. China