可穿戴计算机
材料科学
波形
可穿戴技术
信号(编程语言)
噪音(视频)
计算机科学
触觉传感器
灵敏度(控制系统)
纳米技术
接口(物质)
电子皮肤
电子工程
计算机视觉
人工智能
嵌入式系统
工程类
电信
图像(数学)
复合材料
机器人
毛细管作用
程序设计语言
雷达
毛细管数
作者
Zijie Zhu,Ruya Li,Tingrui Pan
标识
DOI:10.1002/adma.201705122
摘要
Recent development of epidermal electronics provides an enabling means to continuous monitoring of physiological signals and close tracking of physical activities without affecting quality of life. Such devices require high sensitivity for low-magnitude signal detection, noise reduction for motion artifacts, imperceptible wearability with long-term comfortableness, and low-cost production for scalable manufacturing. However, the existing epidermal pressure sensing devices, usually involving complex multilayer structures, have not fully addressed the aforementioned challenges. Here, the first epidermal-iontronic interface (EII) is successfully introduced incorporating both single-sided iontronic devices and the skin itself as the pressure sensing architectures, allowing an ultrathin, flexible, and imperceptible packaging with conformal epidermal contact. Notably, utilizing skin as part of the EII sensor, high pressure sensitivity and high signal-to-noise ratios are achieved, along with ultralow motion artifacts for both internal (body) and external (environmental) mechanical stimuli. Monitoring of various vital signals, such as blood pressure waveforms, respiration waveforms, muscle activities and artificial tactile sensation, is successfully demonstrated, implicating a broad applicability of the EII devices for emerging wearable applications.
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