Advanced Technology Development Centre, Indian Institute of Technology Kharagpur, Kharagpur 721302, India.
Electronics & Electrical Communication Engineering, Indian Institute of Technology Kharagpur, Kharagpur 721302, India.
ACS Sens. 2021 Jun 25;6(6):2218-2224. doi: 10.1021/acssensors.1c00115. Epub 2021 Jun 14.
Semiconducting metal oxide-based gas sensors have inadequate selectivity as they are responsive toward a variety of gases. Here, we report the implementation of gas sensing kinetic analysis of the sensor to identify the tested volatile organic compounds (VOCs) (2-propanol, formaldehyde, methanol, and toluene) precisely. A single chemiresistive sensor was employed having tin oxide-based hollow spheres as the sensing material, which were obtained by chemical synthesis. The gas sensing measurements were conducted in a dynamic manner where the sensor displayed excellent response with high sensitivity. Eley-Rideal model was adopted to obtain the kinetic properties of the gas sensing phenomenon through theoretical fitting of response transient curves and their corresponding kinetic parameters. The calculated characteristic kinetic properties were further examined to discriminate among different VOCs. The approach of using gas sensing kinetic analysis for multiple gas discrimination is an attractive solution to mitigate the problem of cross-sensitivity for resistive gas sensors.
基于半导体金属氧化物的气体传感器对各种气体都有响应,因此选择性不足。在这里,我们报告了对传感器进行气体感应动力学分析的实施情况,以准确识别测试的挥发性有机化合物(VOC)(2-丙醇、甲醛、甲醇和甲苯)。使用了一种具有锡氧化物空心球作为传感材料的单一电阻式传感器,该传感器是通过化学合成获得的。气体感应测量以动态方式进行,传感器显示出高灵敏度的优异响应。通过对响应瞬变曲线及其相应的动力学参数进行理论拟合,采用艾利-里德尔模型获得气体感应现象的动力学特性。进一步检查计算出的特征动力学特性,以区分不同的 VOC。使用气体感应动力学分析进行多种气体区分的方法是减轻电阻式气体传感器交叉敏感性问题的一种有吸引力的解决方案。