材料科学
电子皮肤
信号(编程语言)
自愈水凝胶
接口(物质)
电子线路
传输(电信)
柔性电子器件
脑-机接口
纳米技术
计算机科学
无线
粘附
印刷电路板
光电子学
导电体
计算机硬件
数码产品
图层(电子)
信号处理
电子工程
生物神经网络
作者
Deliang Li,Hongxing Zhou,Le Liu,Chenxi Jing,Kunpeng Ji,Guanshi Liu,Haoqi Bai,Huilin Yuan,Hongguo Wei,Wenwen Zhang,Dayu Hu,He Liu,Ye Tian
标识
DOI:10.1002/adfm.202532170
摘要
ABSTRACT Hydrogel‐based flexible circuits demand robust rigid‐soft interfacial adhesion, strain‐insensitive electrical performance, and reliable digital‐analog signal transmission capabilities to enable high‐performance electronic skin (e‐skin) applications. Here, we developed a 3D‐printable AgNSs/AA‐DMAPS hydrogel with tunable viscosity via a dual‐anchoring strategy, where silver nanosheets (AgNSs) create nano‐adhesion by forming dynamic crosslinked hydrogel networks. The resulting hydrogel exhibits strain insensitivity within 500% elongation, high electrical conductivity (>16 × 10 4 S/m), and superior multi‐interfacial adhesion properties. Notably, the dual‐anchoring design enables dynamic bonding with metal surfaces (∼450 kPa), allowing self‐welding to hardware without treatment. Flexible circuits printed with AgNSs/AA‐DMAPS hydrogel demonstrate near‐field communication (NFC) functionality and wireless charging, with flexible printed circuit (FPC) capable of transmitting high‐speed signals up to 8 MHz while maintaining effective image signal transmission under 50% strain. Our printed brain‐computer interface (BCI) e‐skin based on this hydrogel achieves EEG signal monitoring. In consciousness classification tasks using the BCI e‐skin, our proposed CNN‐LSTM model attained 90.8% accuracy across six categories. The classification system was deployed on a local server to drive robotic manipulation, enabling real‐time EEG‐controlled robotic hand movement through locally models. The AgNSs/AA‐DMAPS hydrogel‐based BCI e‐skin opens new possibilities for daily brain monitoring applications and continuous exploration of neuropsychiatric disease progression patterns.
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