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An ultra-sensitive piezoresistive polymer nano-composite microcantilever platform for humidity and soil moisture detection

机译:用于湿度和土壤湿度检测的超灵敏压阻聚合物纳米复合微悬臂平台

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摘要

Simultaneous monitoring of soil moisture at different soil levels or near plant roots and relative humidity are crucial for optimizing the crop yield. In the present paper, we demonstrate a novel, compact and inexpensive polymer nano-composite piezoresistive microcantilever sensor platform for the measurement of relative humidity (% RH) and soil moisture. A piezoresistive microcantilever is realized using SU-8 and carbon black based nano-composite. Its surface is further modified by Poly-aniline (PANI) nanofibers as a sensing layer. The surface functionalization is confirmed by FTIR, SEM and contact angle measurements. The sensor exhibited a maximum response of 28 mV toward 93% RH with sensitivity of 64 μV/0.1% RH. Sensitivity values of 43.6,275 and 78.6 μV/0.15% change in the moisture content for bentonite soil, white clay and sand, respectively, are achieved. Such high sensitivity values coupled with the low cost can be utilized further for the realization of rugged, portable and handheld devices with wireless networking facility.
机译:同时监测不同土壤水平或植物根部附近的土壤水分和相对湿度对于优化作物产量至关重要。在本文中,我们展示了一种新颖,紧凑且便宜的聚合物纳米复合压阻微悬臂梁传感器平台,用于测量相对湿度(%RH)和土壤湿度。使用SU-8和基于炭黑的纳米复合材料可实现压阻微悬臂梁。其表面通过聚苯胺(PANI)纳米纤维作为传感层进一步改性。通过FTIR,SEM和接触角测量来确认表面功能化。传感器对93%RH表现出28 mV的最大响应,灵敏度为64μV/ 0.1%RH。膨润土,白土和沙子的含水率变化的灵敏度值分别为43.6275和78.6μV/ 0.15%。这种高灵敏度值与低成本相结合,可以进一步用于实现具有无线联网功能的坚固,便携式和手持式设备。

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