自愈水凝胶
离子键合
导电体
材料科学
化学工程
运动(物理)
化学物理
高分子科学
纳米技术
高分子化学
复合材料
化学
离子
物理
经典力学
工程类
有机化学
作者
Xinpeng Lv,Qi‐Wei Zhang,Ze Li,Kai Gong,Bingbing Gao,Hongqiu Wei,Peng Li
摘要
ABSTRACT Conductive hydrogels are promising for flexible electronic device applications, where strain change is converted to electrical signal responses. However, most reported conductive hydrogels are typically frozen around 0°C and dried out limiting their potential applications. Herein, a highly stretchable ionic conductive hydrogel (ICH) with antifreezing and water retention properties was prepared using a natural polymer‐based hydrogel (sodium alginate‐co‐polyacrylamide) as the matrix material. By introducing highly hydrated salt CaCl 2 and ethylene glycol via a solvent displacement method, the ICH exhibits high ionic conductivity (0.91S/m at 20°C), high transparency (95%), and antifreezing properties (−43°C). Moreover, the optimized ICH achieves a satisfactory sensitivity toward tension strain (gauge factor = 2.58 at 100% strain). Interestingly, a real‐time sensing system for wearable motion based on the resulting ICH is well developed by integrating a wireless transmission platform. It is anticipated that such an ICH sensing system will significantly broaden the opportunities for flexible sensor applications.
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