材料科学
弹性体
自愈
复合材料
聚合物
极限抗拉强度
涂层
氢键
自愈材料
超分子化学
基质(水族馆)
超分子聚合物
分子
地质学
病理
海洋学
有机化学
化学
替代医学
医学
作者
Ruichun Du,Zhicheng Xu,Cong Zhu,Yuanwen Jiang,Hongping Yan,Hung‐Chin Wu,Orestis Vardoulis,Yifeng Cai,Xiangyang Zhu,Zhenan Bao,Qiuhong Zhang,Xudong Jia
标识
DOI:10.1002/adfm.201907139
摘要
Abstract The long application life and stable performance of stretchable electronics have been putting forward requirements for both higher mechanical properties and better self‐healing ability of polymeric substrates. However, for self‐healing materials, simultaneously improving stretchability and robustness is still challenging. Here, by incorporating sliding crosslinker (polyrotaxanes) and hydrogen bonds into a polymer, a highly stretchable and self‐healable elastomer with good mechanical strength is achieved. The elastomer exhibits very high stretchability, such that it can be stretched to 2800% with a fracture strength of 1.05 MPa. Moreover, the elastomer can achieve nearly complete self‐healing (93%) at 55 °C. Next, tensile tests under different temperatures, step extension experiments, and in situ small angle X‐ray scattering confirm that the excellent stretchability is attributed to the combined effects of sliding cyclodextrins along guest chains and hydrogen bonds. Furthermore, a strain sensor by coating the single‐wall carbon nanotubes onto the surface of the elastic substrate is fabricated.
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