机械敏感通道
材料科学
离子键合
离子
纳米技术
自愈
超短脉冲
离子通道
化学
光学
物理
病理
受体
医学
有机化学
生物化学
替代医学
激光器
作者
Elvis K. Boahen,Baohai Pan,Hyukmin Kweon,Joo Sung Kim,Hanbin Choi,Zhengyang Kong,Dong Jun Kim,Jin Zhu,Wu Bin Ying,Kyung Jin Lee,Do Hwan Kim
标识
DOI:10.1038/s41467-022-35434-8
摘要
The self-healing properties and ionic sensing capabilities of the human skin offer inspiring groundwork for the designs of stretchable iontronic skins. However, from electronic to ionic mechanosensitive skins, simultaneously achieving autonomously superior self-healing properties, superior elasticity, and effective control of ion dynamics in a homogeneous system is rarely feasible. Here, we report a Cl-functionalized iontronic pressure sensitive material (CLiPS), designed via the introduction of Cl-functionalized groups into a polyurethane matrix, which realizes an ultrafast, autonomous self-healing speed (4.3 µm/min), high self-healing efficiency (91% within 60 min), and mechanosensitive piezo-ionic dynamics. This strategy promotes both an excellent elastic recovery (100%) and effective control of ion dynamics because the Cl groups trap the ions in the system via ion-dipole interactions, resulting in excellent pressure sensitivity (7.36 kPa
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