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石墨烯界面的柔性和可拉伸微纳电极:从制备到汗液葡萄糖检测。

Graphene-interfaced flexible and stretchable micro-nano electrodes: from fabrication to sweat glucose detection.

机构信息

Sabanci University, SUNUM Nanotechnology Research and Application Center, Tuzla, 34956, Istanbul, Turkey.

出版信息

Mater Horiz. 2023 May 9;10(5):1580-1607. doi: 10.1039/d2mh01517j.

Abstract

Flexible and stretchable wearable electronic devices have received tremendous attention for their non-invasive and personal health monitoring applications. These devices have been fabricated by integrating flexible substrates and graphene nanostructures for non-invasive detection of physiological risk biomarkers from human bodily fluids, such as sweat, and monitoring of human physical motion tracking parameters. The extraordinary properties of graphene nanostructures in fully integrated wearable devices have enabled improved sensitivity, electronic readouts, signal conditioning and communication, energy harvesting from power sources through electrode design and patterning, and graphene surface modification or treatment. This review explores advances made toward the fabrication of graphene-interfaced wearable sensors, flexible and stretchable conductive graphene electrodes, as well as their potential applications in electrochemical sensors and field-effect-transistors (FETs) with special emphasis on monitoring sweat biomarkers, mainly in glucose-sensing applications. The review emphasizes flexible wearable sweat sensors and provides various approaches thus far employed for the fabrication of graphene-enabled conductive and stretchable micro-nano electrodes, such as photolithography, electron-beam evaporation, laser-induced graphene designing, ink printing, chemical-synthesis and graphene surface modification. It further explores existing graphene-interfaced flexible wearable electronic devices utilized for sweat glucose sensing, and their technological potential for non-invasive health monitoring applications.

摘要

可伸缩的可穿戴电子设备因其非侵入性和个人健康监测应用而受到极大关注。这些设备是通过集成柔性衬底和石墨烯纳米结构来制造的,用于非侵入式检测人体体液(如汗液)中的生理风险生物标志物,并监测人体物理运动跟踪参数。石墨烯纳米结构在全集成可穿戴设备中的卓越性能,实现了灵敏度、电子读数、信号调理和通信的改善,通过电极设计和图案化从电源中进行能量收集,以及石墨烯表面的修饰或处理。本综述探讨了在制造与石墨烯接口的可穿戴传感器、柔性和可拉伸的导电石墨烯电极方面取得的进展,以及它们在电化学传感器和场效应晶体管(FET)中的潜在应用,特别强调了监测汗液生物标志物,主要是葡萄糖传感应用。综述强调了柔性可穿戴汗液传感器,并提供了迄今为止用于制造基于石墨烯的导电和可拉伸微纳电极的各种方法,例如光刻、电子束蒸发、激光诱导石墨烯设计、喷墨打印、化学合成和石墨烯表面修饰。它进一步探讨了用于汗液葡萄糖传感的现有基于石墨烯的灵活可穿戴电子设备,以及它们在非侵入性健康监测应用中的技术潜力。

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