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Highly Elastic Graphene-Based Electronics Toward Electronic Skin

机译:基于高弹性石墨烯的电子产品对电子皮肤的影响

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Epidermal electronics are extensively explored as an important platform for future biomedical engineering. Epidermal devices are typically fabricated using high-cost methods employing complex vacuum microfabrication processes, limiting their widespread potential in wearable electronics. Here, a low-cost, solution-based approach using electroconductive reduced graphene oxide (RGO) sheets on elastic and porous poly(dimethylsiloxane) (PDMS) thin films for multifunctional, high-performance, graphene-based epidermal bioelectrodes and strain sensors is presented. These devices are fabricated employing simple coatings and direct patterning without using any complicated microfabrication processes. The graphene bioelectrodes show a superior stretchability (up to 150% strain), with mechanical durability up to 5000 cycles of stretching and releasing, and low sheet resistance (1.5 k Omega per square), and the graphene strain sensors exhibit a high sensitivity (a gauge factor of 7 to 173) with a wide sensing range (up to 40% strain). Fully functional applications of dry bioelectrodes in monitoring human electrophysiological signals (i.e., electrocardiogram, electroencephalography, and electromyogram) and highly sensitive strain sensors for precise detection of large-scale human motions are demonstrated. It is believed that our unique processing capability and multifunctional device platform based on RGO/porous PDMS will pave the way for low-cost processing and integration of 2D materials for future wearable electronic skin.
机译:表皮电子学已被广泛探索为未来生物医学工程的重要平台。表皮装置通常使用昂贵的方法制造,该方法采用复杂的真空微细加工工艺,限制了它们在可穿戴电子产品中的广泛潜力。在此,提出了一种基于溶液的低成本解决方案,该方法在弹性和多孔聚二甲基硅氧烷(PDMS)薄膜上使用导电性还原氧化石墨烯(RGO)片材,用于多功能,高性能,基于石墨烯的表皮生物电极和应变传感器。这些设备采用简单的涂层和直接构图制造,而无需使用任何复杂的微细加工工艺。石墨烯生物电极显示出卓越的拉伸性(高达150%的应变),机械耐久性高达5,000个拉伸和释放循环,并且薄层电阻(每平方1.5 k Omega),并且石墨烯应变传感器显示出高灵敏度(a测量系数为7到173),感应范围广(应变高达40%)。演示了干式生物电极在监测人体电生理信号(即心电图,脑电图和肌电图)中的全部功能应用,以及用于精确检测大规模人体运动的高灵敏应变传感器。相信我们独特的处理能力和基于RGO /多孔PDMS的多功能设备平台将为低成本处理和2D材料的集成铺平道路,以用于将来的可穿戴电子皮肤。

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