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Fabrication and Characterization of Flexible Capacitive Humidity Sensors Based on Graphene Oxide on Porous PTFE Substrates

机译:基于石墨烯氧化物在多孔PTFE基材上的柔性电容性湿度传感器的制造与表征

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摘要

Porous polytetrafluoroethylene (PTFE) is physically flexible, thermally and chemically stable, relatively inexpensive, and commercially available. It is attractive for various flexible sensors. This paper has studied flexible capacitive humidity sensors fabricated on porous PTFE substrates. Graphene oxide (GO) was used as a sensing material, both hydrophobic and hydrophilic porous PTFE as the substrates, and interdigitated electrodes on the PTFE substrates were screen-printed. SEM and Raman spectrum were utilized to characterize GO and PTFE. An ethanol soak process is developed to increase the yield of the humidity sensors based on hydrophobic porous PTFE substrates. Static and dynamic properties of these sensors are tested and analyzed. It demonstrates that the flexible capacitive humidity sensors fabricated on the ethanol-treated hydrophobic PTFE exhibit high sensitivity, small hysteresis, and fast response/recovery time.
机译:多孔聚四氟乙烯(PTFE)物理柔性,热和化学稳定,相对便宜,可商购获得。它对各种柔性传感器具有吸引力。本文研究了在多孔PTFE基材上制造的柔性电容性湿度传感器。将石墨烯(GO)用作传感材料,疏水和亲水多孔PTFE作为基材,并且PTFE衬底上的互分配电极被筛选印刷。 SEM和拉曼光谱被用来表征GO和PTFE。开发了一种乙醇浸泡工艺以增加基于疏水多孔PTFE基材的湿度传感器的产量。测试和分析这些传感器的静态和动态特性。它表明,在乙醇处理的疏水PTFE上制造的柔性电容湿度传感器具有高灵敏度,小滞后和快速响应/恢复时间。

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