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Oxygen sensors: Materials, methods, designs and applications

机译:氧气传感器:材料,方法,设计和应用

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摘要

Advancement of gas sensor technology over the past few decades has led to significant progress in pollution control and thereby, to environmental protection. An excellent example is the control of automobile exhaust emissions, made possible by the use of oxygen gas sensors. Since early 1970's there have been sustained studies on oxygen sensors and has led to development of sensors for various applications with varying performance characteristics. Solid electrolyte based potentiometric, amperometric and metal oxide based semiconducting resistive type sensors are used for high temperature applications. For solution-based pollution monitoring, dissolved oxygen sensors based on Clark electrodes have played a major role. More recently, for biological and medical applications, optical oxygen sensors are beginning to have an impact. In this review, we focus on both high temperature as well as dissolved oxygen sensors and compare the different methods of oxygen sensing, discuss underlying principles, and outline the designs and specific applications.
机译:在过去的几十年中,气体传感器技术的进步已导致污染控制方面的重大进步,从而带来了环境保护。一个很好的例子是通过使用氧气传感器来控制汽车尾气排放。自1970年代初期以来,对氧气传感器进行了持续的研究,并导致了针对具有不同性能特征的各种应用的传感器的开发。基于固体电解质的电位,安培和金属氧化物半导体电阻型传感器用于高温应用。对于基于溶液的污染监测,基于克拉克电极的溶解氧传感器发挥了重要作用。最近,对于生物和医学应用,光学氧传感器开始产生影响。在这篇综述中,我们将重点放在高温和溶解氧传感器上,并比较不同的氧传感方法,讨论基本原理,并概述设计和特定应用。

著录项

  • 来源
    《Journal of Materials Science 》 |2003年第21期| 4271-4282| 共12页
  • 作者单位

    Center for Industrial Sensors and Measurements (CISM) Department of Materials Science and Engineering The Ohio State University;

    Center for Industrial Sensors and Measurements (CISM) Department of Materials Science and Engineering The Ohio State University;

    Center for Industrial Sensors and Measurements (CISM) Department of Materials Science and Engineering The Ohio State University;

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