A low-cost flexible electrochemical accelerometer using graphene-integrated microchannel

Yangxi Zhang, Ze Li, Kaisi Xu, Chencheng Gao, Y. Hao, Fanrui Meng, Yiming Gui
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引用次数: 2

Abstract

This paper reports a novel electrochemical accelerometer for applications of wearable systems and smart skins. An original flexible accelerometer based on graphene electrodes and a PDMS microchannel on polyimide flexible print circuit (FPC) has been achieved by low-cost fabrication process. Instead of expensive platinum electrodes, a graphene layer was transferred to FPC to function as chemical inertness sensitive electrodes. To simplify process steps and reduce fabrication cost, the microchannel on FPC was obtained without lithography process by using screen printing PDMS lines. In shock exciter experiment, the accelerometer was tested under 20g shock acceleration, providing 39.5mv/g (0.40μA/g) sensitivity. This microchannel electrochemical device can not only be used for acceleration sensing, but also provide more possibilities in flexible multi-sensor system, for example pressure, temperature and tactile sensing applications.
采用石墨烯集成微通道的低成本柔性电化学加速度计
本文报道了一种用于可穿戴系统和智能皮肤的新型电化学加速度计。采用低成本制造工艺,在聚酰亚胺柔性印刷电路(FPC)上实现了基于石墨烯电极和PDMS微通道的原始柔性加速度计。取代昂贵的铂电极,石墨烯层转移到FPC作为化学惰性敏感电极的功能。为了简化工艺步骤,降低制造成本,采用丝网印刷PDMS线的方法获得了FPC上的微通道。在激波激振器实验中,加速度计在20g激波加速度下测试,灵敏度为39.5mv/g (0.40μA/g)。该微通道电化学器件不仅可以用于加速度传感,还可以在压力、温度和触觉传感等柔性多传感器系统中提供更多的应用可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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