信号(编程语言)
电导率
材料科学
电阻率和电导率
导电体
自愈水凝胶
电极
弹性模量
液态金属
极限抗拉强度
自愈
压力(语言学)
变形(气象学)
模数
复合材料
纳米技术
高分子化学
计算机科学
化学
哲学
病理
物理化学
工程类
程序设计语言
电气工程
替代医学
医学
语言学
作者
Danyang Wang,Lu Qin,Weihu Yang,Ye He,Songyue Zhang,Yulu Yang,Kun Xu,Pengfei Gao,Jinxiu Yu,Kaiyong Cai
标识
DOI:10.1021/acsapm.1c01063
摘要
The conductive material used in traditional conductive hydrogels is inherently rigid, which makes the material's mechanical properties poor. In addition, the use of chemical covalent bonds to form gels makes the hydrogel lack self-healing properties, which limits the conductivity and the application of gel. Based on the above reasons, we use the characteristics of the strong trivalent iron ion chelating ability to prepare a PVA/PAA/Fe3+ system three-dimensional network structure hydrogel and design a sandwich structure to encapsulate liquid metal gallium indium tin (GaIn) in the hydrogel. Inside, the strong conductivity of the liquid metal is used while protecting the liquid metal from being oxidized. In addition, we explore its mechanical properties, electrical conductivity, self-healing properties, adhesion properties, antibacterial properties, etc. and prove them by tensile stress–strain mechanic experiments, electrical impedance experiments, strain sensor signal detection, and biological signal detection experiments. The results show that the as-prepared hydrogel exhibited excellent self-healing performance and antibacterial ability and has mechanical properties that fit the elastic modulus of the skin. Compared with traditional Ag/AgCl electrodes, it can detect electrocardiogram and other biological signals very well as well as having long-lasting and repeated use.
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