杰纳斯
材料科学
超亲水性
纳米技术
发射率
碳纳米管
光电子学
水分
电阻式触摸屏
复合材料
织物
聚二甲基硅氧烷
可穿戴技术
数码产品
热传导
光热治疗
石墨烯
热导率
电子设备和系统的热管理
辐射冷却
光伏
热的
柔性电子器件
可穿戴计算机
电子皮肤
红外线的
热阻
工作(物理)
热电效应
热辐射
造型(装饰)
电阻和电导
作者
Bing Dai,Peng Zhao,Zhixing Yuan,Erwei Yuan,Shulei Guo,Fang Wang,Bing Xu,Xueji Zhang
标识
DOI:10.1021/acsami.5c25993
摘要
Wearable electronics have attracted great attention in recent decades. However, excessive sweat accumulation on skin often has a significant effect on the signal stability, comfort, and safety of electronic skin in practical applications. Herein, a skin-comfortable Janus electronic textile (e-textile) that integrates unidirectional liquid transport and passive radiative cooling properties is developed. This e-textile is fabricated through laser ablation and single-side plasma treatment of carbon nanotubes (CNTs) doped with polydimethylsiloxane (PDMS). The resulting e-textile features a conical pore structure and asymmetric wettability, enabling unidirectional sweat transport from the skin surface to a superhydrophilic silk layer, thereby maintaining a dry and comfortable skin microenvironment. The Janus e-textile achieves a solar reflectivity of 69.2% and a mid-infrared emissivity of 98.3%, reducing the temperature by approximately 5.0 °C compared with a cotton fabric under solar intensity, demonstrating a superior radiative cooling performance. Moreover, the Janus e-textile exhibits stable resistance changes under cyclic stretching and bending, accurately detecting subtle movements across various body parts while reliably acquiring electromyography (EMG) signals. This work positions the Janus e-textile as a pioneering solution for next-generation wearable technologies, integrating thermal and moisture management with advanced resistive strain sensing and EMG capabilities for applications in sports, rehabilitation, and health monitoring.
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