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Q-factor control of multilayer micromembrane using PZT composite material

机译:使用PZT复合材料对多层微膜的Q因子控制

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Cantilever and membrane based sensors, which are capable of providing accurate detection of target analytes have been always an important research topic of medical diagnostics, food testing, and environmental monitoring fields. Here, the mechanical detection is achieved by micro- and nano-scale cantilevers for stress sensing and mass sensing, or micro- and nano-scale plates or membranes. High sensitivity is a major issue for the active element and it could be achieved via increased Q-factor. The ability to control the Q factor expands the range of application of the device and allows to achieve more accurate results. The aim of this paper is to investigate the mechanical and electrical properties, as well as, the ability to control the Q factor of the membrane with PZT nanocomposite. This multilayered membrane was formatted using the n-type <100>; silicon substrate by implementing the Low Pressure Chemical Vapor Deposition (LPCVD), photolithography by using photomask with defined dimensions, deep etching, and e-beam evaporation techniques. Dynamic and electrical characteristics of the membrane were numerically investigated using COMSOL Multiphysics software. The use of the multilayered membrane can range from simple monitoring of particles concentration in a closed environment to inspecting glucose levels in human fluids (blood, tears, sweat, etc.).
机译:能够提供准确检测目标分析物的悬臂和基于膜的传感器始终是医疗诊断,食物检测和环境监测领域的重要研究课题。这里,通过微型和纳米级悬臂器来实现机械检测,用于应力传感和质量传感,或微型和纳米垢板或膜。高灵敏度是活性元素的主要问题,并且可以通过增加的Q系数来实现。控制Q因子的能力扩展了设备的应用范围,并允许实现更准确的结果。本文的目的是研究机械和电气性能,以及控制膜与PZT纳米复合材料的Q系数的能力。使用N型<100>格式化该多层膜;通过使用具有限定尺寸,深蚀刻和电子束蒸发技术的光掩模来实现低压化学气相沉积(LPCVD),通过使用光掩模来实现硅衬底。使用COMSOL Multiphysics软件进行数值研究膜的动态和电气特性。多层膜的使用可以从闭合环境中简单地监测颗粒浓度,以检查人体流体(血液,泪液,汗液等)中的葡萄糖水平。

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