Flexible Humidity Sensor Based on Electrochemically Polymerized Polypyrrole

Qi Zhao, X. Qian, Xiaohao Wang, Liwei Lin
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Abstract

Environmental sensing is an important task in the development of infrastructures for the applications of the Internet of things. In this work, we introduce a flexible humidity sensor based on electrochemically polymerized polypyrrole to absorb or desorb water vapors to detect relative humidity (RH). A test platform was built to mix the different amounts of dry and wet air for the relative humidity ranging from 15% to 95%. Experimental results show that the response time from 20% to 90% RH of the sensor was 505 seconds and the recovery time from 90% to 20% RH was 328 seconds with good repeatability during three cycles. The wide dynamic range, excellent repeatability and reasonable response time make the sensor applicable for home monitoring applications. Furthermore, the flexible sensor is suitable for embedding into wallpaper or decorations for promising future systems to map the environmental status of buildings and homes.
基于电化学聚合聚吡咯的柔性湿度传感器
环境感知是物联网应用基础设施建设中的一项重要任务。在这项工作中,我们介绍了一种基于电化学聚合聚吡咯的柔性湿度传感器,用于吸收或解吸水蒸气来检测相对湿度(RH)。搭建了相对湿度为15% ~ 95%的干湿空气混合试验平台。实验结果表明,该传感器在20% ~ 90% RH范围内的响应时间为505秒,在90% ~ 20% RH范围内的恢复时间为328秒,3个周期内重复性良好。宽的动态范围,优异的可重复性和合理的响应时间使传感器适用于家庭监控应用。此外,柔性传感器适合嵌入墙纸或装饰中,为未来有希望的系统绘制建筑物和家庭的环境状况。
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