A Recyclable Polythioester With <i>α</i> ‐Gem‐Dimethyl Substitution: Instantaneous Crystallization Triggered by Large and Rapid Stretching

C Chun‐Yan Lyu (Beijing National Laboratory for Molecular Sciences Center for Soft Matter Science and Engineering Key Laboratory of Polymer Chemistry and Physics of Ministry of Education College of Chemistry and Molecular Engineering Peking University Beijing People's Republic of China) W Wei Xia (State Key Laboratory of Quantum Functional Materials, School of Physical Science and Technology) T Tianyi Ma (Centre for Atomaterials and Nanomanufacturing, School of Science, Royal Melbourne Institute of Technology University) C Chaoqun Weng (Beijing National Laboratory for Molecular Sciences Center for Soft Matter Science and Engineering Key Laboratory of Polymer Chemistry and Physics of Ministry of Education College of Chemistry and Molecular Engineering Peking University Beijing People's Republic of China) M Ming‐He Sun (Beijing National Laboratory for Molecular Sciences Center for Soft Matter Science and Engineering Key Laboratory of Polymer Chemistry and Physics of Ministry of Education College of Chemistry and Molecular Engineering Peking University Beijing People's Republic of China) B Bai‐Yu Wu (Beijing National Laboratory for Molecular Sciences Center for Soft Matter Science and Engineering Key Laboratory of Polymer Chemistry and Physics of Ministry of Education College of Chemistry and Molecular Engineering Peking University Beijing People's Republic of China) X Xiaoyan Tang (Beijing National Laboratory for Molecular Sciences, Key Laboratory of Polymer Chemistry and Physics of Ministry of Education, Center for Soft Matter Science and Engineering, College of Chemistry and Molecular Engineering) G Guoming Liu (Beijing National Laboratory for Molecular Sciences, CAS Key Laboratory of Engineering Plastics, Institute of Chemistry) H Hua Lu (Beijing National Laboratory for Molecular Sciences, Center for Soft Matter Science and Engineering, Key Laboratory of Polymer Chemistry and Physics of Ministry of Education, College of Chemistry and Molecular Engineering) E Er‐Qiang Chen (Beijing National Laboratory for Molecular Sciences Center for Soft Matter Science and Engineering Key Laboratory of Polymer Chemistry and Physics of Ministry of Education College of Chemistry and Molecular Engineering Peking University Beijing People's Republic of China)

Abstract

ABSTRACT Designing and fabricating recyclable polymers combining closed‐loop depolymerizability with high mechanical performance remains a major challenge in sustainable materials. To reach both high recyclability without compromising the mechanical properties, precise controlling of the crystallization behaviors emerges as a crucial strategy. Here, we demonstrate unexpected crystallization behavior in a depolymerizable polythioester (PTE), PaGMTE, and report the first crystal structure of this kind. Derived from organocatalytic ring‐opening polymerization of α ‐gem‐dimethyl‐ β ‐thiolactone, PaGMTE exhibits exceptionally slow quiescent crystallization, which stands in sharp contrast to its polyester analog polypivalolactone that crystallizes rapidly. However, large‐amplitude rapid stretching (strain ~600%, strain rate ≥ 10 s −1 ), where the Deborah number based on the Rouse time of entanglement strand exceeds 1, triggers its crystallization, accelerating the crystallization rate by &gt; 200,000 fold and achieving ~40% crystallinity within 1 s. This approach yields highly oriented fibers with outstanding mechanical properties (Young's modulus of 0.80 GPa, tensile strength of 120 MPa, breaking strain of 70%), high transparency, and the potential as a waveguide. We unveil PaGMTE's orthorhombic crystal structure (space group P 2 1 2 1 2 1 , a = 1.075 nm, b = 0.622 nm, c = 3.618 nm) with antiparallel‐packed homochiral 8 3 helices. The slow quiescent crystallization shall arise from entropic barriers associated with conformational adjustments toward the helix. Our findings highlight sulfur substitution's profound impact on polymer properties and prove that significantly enhancing the crystallization process holds promise for making PTE a high‐value‐added recyclable material.

Article Details

Volume / Issue Vol. 38, Issue 14
Published March 01, 2026
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (10)

C

Chun‐Yan Lyu

Beijing National Laboratory for Molecular Sciences Center for Soft Matter Science and Engineering Key Laboratory of Polymer Chemistry and Physics of Ministry of Education College of Chemistry and Molecular Engineering Peking University Beijing People's Republic of China

W

Wei Xia

State Key Laboratory of Quantum Functional Materials, School of Physical Science and Technology

T

Tianyi Ma

Centre for Atomaterials and Nanomanufacturing, School of Science, Royal Melbourne Institute of Technology University

C

Chaoqun Weng

Beijing National Laboratory for Molecular Sciences Center for Soft Matter Science and Engineering Key Laboratory of Polymer Chemistry and Physics of Ministry of Education College of Chemistry and Molecular Engineering Peking University Beijing People's Republic of China

M

Ming‐He Sun

Beijing National Laboratory for Molecular Sciences Center for Soft Matter Science and Engineering Key Laboratory of Polymer Chemistry and Physics of Ministry of Education College of Chemistry and Molecular Engineering Peking University Beijing People's Republic of China

B

Bai‐Yu Wu

Beijing National Laboratory for Molecular Sciences Center for Soft Matter Science and Engineering Key Laboratory of Polymer Chemistry and Physics of Ministry of Education College of Chemistry and Molecular Engineering Peking University Beijing People's Republic of China

X

Xiaoyan Tang

Beijing National Laboratory for Molecular Sciences, Key Laboratory of Polymer Chemistry and Physics of Ministry of Education, Center for Soft Matter Science and Engineering, College of Chemistry and Molecular Engineering

G

Guoming Liu

Beijing National Laboratory for Molecular Sciences, CAS Key Laboratory of Engineering Plastics, Institute of Chemistry

H

Hua Lu

Beijing National Laboratory for Molecular Sciences, Center for Soft Matter Science and Engineering, Key Laboratory of Polymer Chemistry and Physics of Ministry of Education, College of Chemistry and Molecular Engineering

E

Er‐Qiang Chen

Beijing National Laboratory for Molecular Sciences Center for Soft Matter Science and Engineering Key Laboratory of Polymer Chemistry and Physics of Ministry of Education College of Chemistry and Molecular Engineering Peking University Beijing People's Republic of China