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微机械热气体传感器研究综述。

Micromachined Thermal Gas Sensors-A Review.

机构信息

Department of Engineering, University of Cambridge, Cambridge CB3 0FA, UK.

School of Engineering, University of Warwick, Coventry CV4 7AL, UK.

出版信息

Sensors (Basel). 2023 Jan 6;23(2):681. doi: 10.3390/s23020681.

Abstract

In recent years, there has been a growing desire to monitor and control harmful substances arising from industrial processes that impact upon our health and quality of life. This has led to a large market demand for gas sensors, which are commonly based on sensors that rely upon a chemical reaction with the target analyte. In contrast, thermal conductivity detectors are physical sensors that detect gases through a change in their thermal conductivity. Thermal conductivity gas sensors offer several advantages over their chemical (reactive) counterparts that include higher reproducibility, better stability, lower cost, lower power consumption, simpler construction, faster response time, longer lifetime, wide dynamic range, and smaller footprint. It is for these reasons, despite a poor selectivity, that they are gaining renewed interest after recent developments in MEMS-based silicon sensors allowing CMOS integration and smart application within the emerging Internet of Things (IoT). This timely review focuses on the state-of-the-art in thermal conductivity sensors; it contains a general introduction, theory of operation, interface electronics, use in commercial applications, and recent research developments. In addition, both steady-state and transient methods of operation are discussed with their relative advantages and disadvantages presented. Finally, some of recent innovations in thermal conductivity gas sensors are explored.

摘要

近年来,人们越来越希望监测和控制工业过程中产生的有害物质,这些物质会影响我们的健康和生活质量。这导致了对气体传感器的巨大市场需求,气体传感器通常基于与目标分析物发生化学反应的传感器。相比之下,热导率探测器是通过检测气体热导率的变化来检测气体的物理传感器。热导率气体传感器相对于其化学(反应性)对应物具有几个优势,包括更高的重现性、更好的稳定性、更低的成本、更低的功耗、更简单的结构、更快的响应时间、更长的寿命、更宽的动态范围和更小的占地面积。正是由于这些原因,尽管选择性较差,但在基于 MEMS 的硅传感器最近的发展允许在新兴的物联网(IoT)中进行 CMOS 集成和智能应用之后,它们重新引起了人们的兴趣。这篇及时的综述重点介绍了热导率传感器的最新技术;它包含了一般介绍、工作原理、接口电子学、在商业应用中的使用以及最近的研究进展。此外,还讨论了稳态和瞬态工作方法及其相对优缺点。最后,探讨了热导率气体传感器的一些最新创新。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3780/9860855/f41df1ecb9c3/sensors-23-00681-g001.jpg

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