自愈水凝胶
材料科学
导电体
可穿戴计算机
复合数
可穿戴技术
纳米技术
人体运动
制作
导电聚合物
信号(编程语言)
计算机科学
导电的
数码产品
电子皮肤
电子元件
智能材料
仿生学
自愈
材料选择
3D打印
作者
Yiqing Yuan,Yilong Zhang,Haiyang Duan,Yitao Zhang,Lijun Lu,A. I. Emel’yanov,A. S. Pozdnyakov,Pengcheng Zhu,Yanchao Mao
出处
期刊:Gels
[Multidisciplinary Digital Publishing Institute]
日期:2025-10-13
卷期号:11 (10): 822-822
被引量:2
摘要
Electronic skins (E-skins) are the integration of intelligent wearable sensors that can collect human physiological, motion, or environmental parameters in real-time through flexible, sensitive materials. The performance of E-skins depends on the selection of materials to a large extent. Hydrogel materials are an excellent candidate for E-skin preparation due to their tissue-like softness and biocompatibility. However, their low electrical conductivity, weak mechanical strength, and environmental instability seriously hinder high-fidelity signal acquisition and reliable operation in practical applications. To overcome these bottlenecks, conductive composite hydrogels have emerged as a promising alternative material. The unique properties of conductive composite hydrogels, such as high stretchability, self-healing ability, and adjustable electrical conductivity, address the relevant issues of traditional hydrogels in wearable applications. This review focuses on conductive composite hydrogels for wearable E-skins. Firstly, the types, characteristics, and preparation strategies of hydrogel matrix materials are introduced. Subsequently, the performance regulation mechanisms of key conductive fillers on composite hydrogels are discussed. Then, the application progress in electrophysiological signal monitoring, human-machine interaction, and human motion monitoring is reviewed. Finally, the current challenges and future development directions of hydrogel-based E-skins are prospected, aiming to provide comprehensive material and fabrication references for the practical application of composite hydrogel in electronic skins.
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