自愈
弹性体
聚氨酯
材料科学
高分子科学
互穿聚合物网络
高分子化学
复合材料
聚合物
医学
病理
替代医学
作者
Xingyu Mou,Yujun Guo,Xuejun Lai,Jianping Ding,Hongqiang Li,Xingrong Zeng
出处
期刊:PubMed
[National Institutes of Health]
日期:2025-08-14
卷期号:: e00509-e00509
标识
DOI:10.1002/marc.202500509
摘要
Chemically crosslinked polyurethane materials with excellent mechanical properties have attracted considerable attention, yet recyclability is still challenging. Herein, a self-healing and reprocessable polyurethane (PU) elastomer with triple dynamic networks was synthesized through the addition reactions of methylenediphenyldiisocyanate with polyetheramine, protocatechualdehyde, and tris(2-aminoethyl) amine, as well as the incorporation of Fe3+ ions. Owing to the formation of microphase-separated structure and triple dynamic networks including hydrogen bonds, Fe3+-catechol coordination, and imine bonds, the obtained PU elastomer exhibited excellent mechanical properties with a tensile strength of 6.40 MPa, elongation at break of 1838%, toughness of 51.16 MJ m- 3 and fracture energy of 154.91 kJ m- 2. Importantly, the PU elastomer possessed not only high healing efficiency of 96.6% after healing at 60°C for 24 h, but also superior reprocessability with a tensile strength retention rate of 75.6% after three reprocessing cycles. Besides, owing to residual phenolic hydroxyl groups in unreacted PA, the PU elastomer also exhibited outstanding thermal-oxidative aging resistance. The findings in this work conceivably stand out as a new methodology for the preparation of functional and high-performance elastomers.
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