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Analysis of a Hybrid Micro-Electro-Mechanical Sensor Based on Graphene Oxide/Polyvinyl Alcohol for Humidity Measurements

机译:氧化石墨烯/聚乙烯醇混合微机电传感器用于湿度测量的分析

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摘要

In this paper, we present a redundant microsensor based on the bulk and etch silicon‑on‑insulator (BESOI) process for measuring relative humidity (RH), by using a graphene‑oxide/polyvinyl‑alcohol (GO/PVA) composite. The MEMS is a mechanical oscillator, composed of a proof mass with multilayer of nanomaterials (GO/PVA) and suspended by four crab-leg springs. The redundant approach realized concerns the use of different readout strategies in order to estimate the same measurand RH. This is an intriguing solution to realize a robust measurement system with multiple outputs, by using the GO/PVA as functional material. In the presence of RH variation, GO/PVA (1) changes its mass, and as consequence, a variation of the natural frequency of the integrated oscillator can be observed; and (2) varies its conductivity, which can be measured by using two integrated electrodes. The sensor was designed, analyzed and modeled; experimental results are reported here to demonstrate the effectiveness of our implementation.
机译:在本文中,我们介绍了一种冗余的微型传感器,该传感器基于绝缘体和蚀刻绝缘体上硅(BESOI)工艺,通过使用氧化石墨烯/聚乙烯醇(GO / PVA)复合材料来测量相对湿度(RH)。 MEMS是一种机械振荡器,由具有多层纳米材料(GO / PVA)的检测质量组成,并由四个蟹腿弹簧悬挂。实现的冗余方法涉及到使用不同的读出策略来估计相同的被测RH。通过使用GO / PVA作为功能材料,这是一种实现具有多个输出的强大测量系统的有趣解决方案。在存在RH变化的情况下,GO / PVA(1)改变了质量,因此,可以观察到集成振荡器的固有频率变化; (2)改变其电导率,可以使用两个集成电极进行测量。对传感器进行了设计,分析和建模;在这里报告了实验结果,以证明我们实施的有效性。

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