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Environmental Sensing Applications of Zinc Oxide Based Film Bulk Acoustic Resonator.

机译:氧化锌基薄膜体声谐振器的环境传感应用。

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摘要

Different environmental factors, such as ultraviolet radiation (UV), relative humidity (RH) and the presence of reducing gases (acetone and ethanol), play an important role in the daily life of human beings. UV is very important in a number of areas, such as astronomy, resin curing of polymeric materials, combustion engineering, water purification, flame detection and biological effects with more recent proposals like early missile plume detection, secure space-to-space communications and pollution monitoring. RH is a very common parameter in the environment. It is essential not only for human comfort, but also for a broad spectrum of industries and technologies. There is a substantial interest in the development of RH sensors for applications in monitoring moisture level at home, in clean rooms, cryogenic processes, medical and food science, and so on. The concentration of acetone and other ketone bodies in the exhaled air can serve as an express noninvasive diagnosis of ketosis. Meanwhile, driving under the influence of alcohol is a serious traffic violation and this kind of deviant behavior causes many accidents and deaths on the highway. Therefore, the detection of ethanol in breath is usually used as a quick and reliable screening method for the sobriety checkpoint.;Traditionally, semiconductor metal oxide sensors are the major candidates employed in the sensing applications mentioned above. However, they suffer from the low sensitivity, poor selectivity and huge power consumption. In this dissertation, Zinc Oxide (ZnO) based Film Bulk Acoustic Resonator (FBAR) was developed to monitor UV, RH, acetone and ethanol in the environment. FBAR generally consists of a sputtered piezoelectric thin film (ZnO/AlN) sandwiched between two electrodes. It has been well developed both as filters and as high sensitivity mass sensors in recent years. FBAR offers high sensitivity and excellent selectivity for various environment monitoring applications. As the sensing signal is in the frequency domain, FABR has the potential to be incorporated in a wireless sensor network for remote sensing. This study extended our current knowledge of FBAR and pointed out feasible directions for future exploration.
机译:紫外线(UV),相对湿度(RH)和还原性气体(丙酮和乙醇)的存在等不同的环境因素在人类的日常生活中起着重要的作用。紫外线在许多领域都非常重要,例如天文学,聚合物材料的树脂固化,燃烧工程,水净化,火焰检测和生物效应,以及最新的提议,例如早期导弹羽流检测,安全的空对空通信和污染监控。 RH是环境中非常常见的参数。它不仅对人体舒适至关重要,而且对众多行业和技术也至关重要。 RH传感器的开发引起了人们的极大兴趣,这些传感器可用于监视家庭,洁净室,低温过程,医学和食品科学等领域的湿度水平。呼出空气中丙酮和其他酮体的浓度可作为明确的非侵入性酮症诊断。同时,在酒精的影响下驾驶是严重的交通违法行为,这种不正当行为会导致高速公路上许多事故和死亡。因此,呼吸中乙醇的检测通常用作清醒检查点的一种快速可靠的筛选方法。传统上,半导体金属氧化物传感器是上述传感应用中使用的主要候选方法。但是,它们具有灵敏度低,选择性差和功耗大的缺点。本文开发了基于氧化锌(ZnO)的薄膜体声波谐振器(FBAR)来监测环境中的紫外线,RH,丙酮和乙醇。 FBAR通常由夹在两个电极之间的溅射压电薄膜(ZnO / AlN)组成。近年来,它已作为过滤器和高灵敏度质量传感器得到了很好的发展。 FBAR为各种环境监测应用提供了高灵敏度和出色的选择性。由于感测信号在频域中,因此FABR有潜力被并入用于遥感的无线传感器网络中。这项研究扩展了我们目前对FBAR的认识,并指出了未来探索的可行方向。

著录项

  • 作者

    Qiu, Xiaotun.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 150 p.
  • 总页数 150
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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