Regulation of Hard Segment Cluster Structures for High‐performance Poly(urethane‐urea) Elastomers

Author:

Qin Jianliang1ORCID,Chen Yifei2,Guo Xiwei1,Huang Yi1,Chen Guoqing1,Zhang Qi1,He Gaohong23ORCID,Zhu Shiping1,Ruan Xuehua2,Zhu He1ORCID

Affiliation:

1. School of Science and Engineering The Chinese University of Hong Kong, Shenzhen Shenzhen 518172 China

2. School of Chemical Engineering at Panjin Dalian University of Technology Panjin 124221 China

3. State Key Laboratory of Fine Chemicals R&D Center of Membrane Science and Technology School of Chemical Engineering Dalian University of Technology Dalian 116023 China

Abstract

AbstractElastomers are widely used in daily life; however, the preparation of degradable and recyclable elastomers with high strength, high toughness, and excellent crack resistance remains a challenging task. In this report, a polycaprolactone‐based poly(urethane‐urea) elastomer is presented with excellent mechanical properties by optimizing the arrangement of hard segment clusters. It is found that long alkyl chains of the chain extenders lead to small and evenly distributed hard segment clusters, which is beneficial for improving mechanical properties. Together with the multiple hydrogen bond structure and stress‐induced crystallization, the obtained elastomer exhibits a high strength of 63.3 MPa, an excellent toughness of 431 MJ m−3 and an outstanding fracture energy of 489 kJ m−2, while maintaining good recyclability and degradability. It is believed that the obtained elastomer holds great promise in various application fields and it contributes to the development of a sustainable society.

Funder

National Natural Science Foundation of China

Guangdong Provincial Introduction of Innovative Research and Development Team

Shenzhen Science and Technology Innovation Program

Publisher

Wiley

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