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Transient Epidermal Electronic and Optoelectronic Devices for Multidimensional Physiological Monitoring

机译:用于多维生理监测的瞬态表皮电子和光电设备

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We report a flexible epidermal transient electronic system, including electrodes, electronics and optoelectronics designed to be worn on the skin, by utilizing silk/glycerol blended films (SGBFs). The glycerol-induced plasticization regulates the mechanical properties and thermostability of silk fibroin to be more suitable for high-temperature fabrication and malleable epidermal applications. Featuring environmental friendly and degradable after usage, a triggered transient process is designed with the SGBFs in the presence of water molecular displacement. As a proof of concept, a wearable silk/glycerol-based electrode (SGBE) and a silk/glycerol-based optoelectronic monitor (SGBOM) are built for multidimensional physiological monitoring (including skin electrode and skin liquid monitor). This study addresses the seamless confluence of biomaterial and epidermal devices, which will pave the way for the harmonized integration of electronics/optics into human.
机译:我们报告了一种灵活的表皮瞬态电子系统,包括利用丝绸/甘油混合膜(SGBFs)设计用于皮肤的电极,电子设备和光电设备。甘油诱导的增塑作用调节丝素蛋白的机械性能和热稳定性,使其更适合高温加工和延展性表皮应用。使用后具有环境友好性和可降解性,在存在水分子置换的情况下,SGBF设计了触发的瞬态过程。作为概念验证,构建了可穿戴的基于丝/甘油的电极(SGBE)和基于丝/甘油的光电监视器(SGBOM),用于多维生理监视(包括皮肤电极和皮肤液体监视器)。这项研究致力于解决生物材料和表皮设备之间的无缝融合,这将为电子/光学设备与人的和谐融合铺平道路。

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