磁滞
接口(物质)
材料科学
运动(物理)
纳米技术
计算机科学
人工智能
人机交互
复合材料
物理
凝聚态物理
毛细管数
毛细管作用
作者
Fu Fan,Lei Chen,Y. G.,Pengshuai Wang,Xiaoqian Dong,Fei Huang,Yuan Niu,Yu Zhou,Zhiwen Shu,Jianfei Xie,Bo Feng
标识
DOI:10.1002/smtd.202500219
摘要
Human skin functions not only as a barrier but also as a sensitive interface responding to environmental stimuli. Skin-attachable conductive materials are gaining increasingly attention in the field of on-skin electronics for applications in health monitoring and human-machine interfaces (HMIs). However, achieving both low modulus and low hysteresis in skin-attachable conductive materials remains challenging. Herein, a skin-like transparent, low-hysteresis, and highly conductive ionogel for human motion monitoring and deep-learning assisted human-machine interface is introduced. The ionogel demonstrates low modulus (5.08 kPa), superior transparency (>92% in the visible range), low hysteresis (<3%), super adhesive and outstanding conductivity (up to 0.86 S/m at 20 °C). The ionogel based sensors demonstrate outstanding sensing sensitivity for human motion monitoring and biopotential detecting. In addition, the ionogel can be integrated in an HMI for handwriting recognition. The 1D-ResNet algorithm is developed for handwriting recognition, achieving an accuracy of 98.13%. It is believe that the ionogels with both low modulus and low hysteresis have great potential for wearable electronics in healthcare monitoring and HMIs in the future.
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