可穿戴计算机
材料科学
可穿戴技术
导电体
软质材料
纳米技术
计算机科学
双层
导线
压力传感器
信号(编程语言)
粒子(生态学)
耐久性
磨损(机械)
作者
Zejun Wang,Puyuan Shi,Yixuan Li,Ting Liu,Boxiang Zhu,Jiayi Liu,Zejun Deng,Yan Wang,Yunmeng Zhao,Zhu Xiao,Shu Gong,Wenlong Cheng
标识
DOI:10.1038/s41467-026-70438-8
摘要
Soft bioelectronic skins represent next-generation wearable technologies for continuous and unobtrusive biomonitoring, enabled by diverse active materials and topological designs. Despite encouraging progress, most wearable skins reported to date remain unable to match the abrasion-resistant sensing functions of human skin. Here, we present abrasion-resistant wearable skins based on a bilayer stretchable conductor architecture. The top layer, composed of silver particle (AgPs)–impregnated styrene-ethylene–butylene–styrene (SEBS), provides superior abrasion resistance, while the underlying layer of liquid metal particle (LMPs)–impregnated SEBS ensures high conductivity under large strains (ε > 900%). While being ultrathin (13.3 µm), the bilayer wearable skins could deliver exceptional durability under extreme mechanical and chemical demands, maintaining electromechanical stability during repeated abrasion, large deformations, and exposure to strong acidic/alkaline environments. They reliably capture high-fidelity mechanical and electrophysiological signals in abrasion-intensive scenarios, such as skin–cloth friction and facial rubbing. Finally, we demonstrate a soft, multimodal system for pressure and biopotential monitoring, enabling applications in braille recognition and facial expression detection with 98.75% prediction accuracy. Wearable bioelectronic skins are essential for health monitoring technologies, but many designs lack the durability and abrasion resistance of human skin. This study presents a bilayered stretchable conductor with a silver particle-impregnated layer that enhances abrasion resistance, conductivity and performs well in harsh environments while maintaining accurate signal capture.
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