Three dimensional printable multi‐arms poly(CL‐co‐TOSUO) for resilient biodegradable elastomer

Author:

Meng Yue1,Zhai Hong1,Zhou Ziting2,Wang Xiaoying3,Han Jiandong2,Feng WenJuan1,Huang Yuxin1,Wang Yuan2,Bai Ying2,Zhou Jing2ORCID,Quan Daping2

Affiliation:

1. GD HPPC and PCFM Lab, School of Chemistry Sun Yat‐sen University Guangzhou China

2. GD Functional Biomaterials Engineering Technology Research Center, Guangzhou Key Laboratory of Flexible Electronic Materials and Wearable Devices, School of Materials Science and Engineering Sun Yat‐sen University Guangzhou China

3. School of Biomedical Engineering Jinan University Guangzhou China

Abstract

AbstractThe development of artificial organs and implants demands new materials with both processability and functionality. A series of star like poly(CL‐co‐TOSUO) copolymers with different molecular weights are synthesized via ring‐opening polymerization. The polymers are modified with norbornene end groups for rapid photo‐crosslinking. Due to the random insertion of 1,4,8‐trioxaspiro‐[4,6]‐9‐undecanone and well‐constructed permanent chemical network, the photo‐crosslinked elastomers are more flexible and resilient than conventional poly(ε‐caprolactone), with 84% resilience above the melting point. Their thermal and mechanical properties can be fine‐tuned by varying the molecular weights of the precursors. The polymer can be fabricated into complex shapes by digital light processing 3D printing. Combined with good cytocompatibility and degradability, the highly flexible elastomers show great potential for tissue engineering.

Funder

Basic and Applied Basic Research Foundation of Guangdong Province

National Natural Science Foundation of China

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,Physical and Theoretical Chemistry

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