Imanian Hadiseh, Noori Mina, Abbasiyan Amin
Department of Electrical Engineering, Sahand University of Technology, Tabriz 51335-1996, Iran; Nano-Optics and Photonics Research Lab (NOPRL), Sahand University of Technology, Tabriz, Iran.
Department of Electrical Engineering, Sahand University of Technology, Tabriz 51335-1996, Iran; Nano-Optics and Photonics Research Lab (NOPRL), Sahand University of Technology, Tabriz, Iran.
Ultrasonics. 2022 Aug;124:106755. doi: 10.1016/j.ultras.2022.106755. Epub 2022 May 4.
In this article, a gas sensor with a single detection unit is presented which is applicable for the detection of diverse gases including CH, NH, N, O, Ar, CO, CH, and their different concentrations in the air background. The proposed Fabry-Perot-based phononic gas sensor is comprised of a detection layer surrounded by thin Steel sheets on both sides. It has been demonstrated that the operating frequency range, the total size of the sensor, the number of detection peaks, and the Q-factor could be adjusted by the width of the detection layer and material use. The functionality of the presented gas sensor has been investigated by the transfer matrix method and the average Q-factor of 1,140,072 and sensitivity of 0.69 MHz.kg.m are obtained for the structure with a thickness ratio of 9:1 for the Steel and gas layers, respectively regarding pure gases. The maximum average Q-factor and sensitivity of over 10 and 1.03 MHz.kg.m are obtained for CH gas concerning the concentration increment. The proposed sensor is simple, scalable to operate at any desired frequency range, and provides a multi-peak detection mechanism.
本文介绍了一种具有单个检测单元的气体传感器,该传感器适用于检测多种气体,包括CH、NH、N、O、Ar、CO、CH及其在空气背景中的不同浓度。所提出的基于法布里-珀罗的声子气体传感器由两侧被薄钢板包围的检测层组成。已经证明,工作频率范围、传感器的总尺寸、检测峰的数量和品质因数可以通过检测层的宽度和材料使用来调整。通过传输矩阵法研究了所提出的气体传感器的功能,对于钢层和气体层厚度比为9:1的结构,分别针对纯气体获得了平均品质因数1,140,072和灵敏度0.69MHz·kg·m。对于CH气体,随着浓度增加,获得了超过10的最大平均品质因数和1.03MHz·kg·m的灵敏度。所提出的传感器结构简单,可扩展以在任何所需频率范围内运行,并提供多峰检测机制。