热塑性聚氨酯
材料科学
复合材料
弹性体
氢键
自愈
热塑性弹性体
聚氨酯
热塑性塑料
机械强度
聚合物
化学
分子
医学
替代医学
有机化学
病理
共聚物
作者
Youngho Eom,Seon‐Mi Kim,Minkyung Lee,Hyeonyeol Jeon,Jaeduk Park,Eun Seong Lee,Sung Yeon Hwang,Jeyoung Park,Dongyeop X. Oh
标识
DOI:10.1038/s41467-021-20931-z
摘要
Self-repairable materials strive to emulate curable and resilient biological tissue; however, their performance is currently insufficient for commercialization purposes because mending and toughening are mutually exclusive. Herein, we report a carbonate-type thermoplastic polyurethane elastomer that self-heals at 35 °C and exhibits a tensile strength of 43 MPa; this elastomer is as strong as the soles used in footwear. Distinctively, it has abundant carbonyl groups in soft-segments and is fully amorphous with negligible phase separation due to poor hard-segment stacking. It operates in dual mechano-responsive mode through a reversible disorder-to-order transition of its hydrogen-bonding array; it heals when static and toughens when dynamic. In static mode, non-crystalline hard segments promote the dynamic exchange of disordered carbonyl hydrogen-bonds for self-healing. The amorphous phase forms stiff crystals when stretched through a transition that orders inter-chain hydrogen bonding. The phase and strain fully return to the pre-stressed state after release to repeat the healing process.
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