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Effects of Textural Properties on the Response of a SnO2-Based Gas Sensor for the Detection of Chemical Warfare Agents

机译:纹理特性对基于SnO2的用于化学战剂检测的气体传感器响应的影响

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摘要

The sensing behavior of SnO2-based thick film gas sensors in a flow system in the presence of a very low concentration (ppb level) of chemical agent simulants such as acetonitrile, dipropylene glycol methyl ether (DPGME), dimethyl methylphosphonate (DMMP), and dichloromethane (DCM) was investigated. Commercial SnO2 [SnO2(C)] and nano-SnO2 prepared by the precipitation method [SnO2(P)] were used to prepare the SnO2 sensor in this study. In the case of DCM and acetonitrile, the SnO2(P) sensor showed higher sensor response as compared with the SnO2(C) sensors. In the case of DMMP and DPGME, however, the SnO2(C) sensor showed higher responses than those of the SnO2(P) sensors. In particular, the response of the SnO2(P) sensor increased as the calcination temperature increased from 400 °C to 800 °C. These results can be explained by the fact that the response of the SnO2-based gas sensor depends on the textural properties of tin oxide and the molecular size of the chemical agent simulant in the detection of the simulant gases (0.1–0.5 ppm).
机译:基于SnO2的厚膜气体传感器在流动系统中存在非常低浓度(ppb级)的化学试剂模拟剂(如乙腈,二丙二醇甲醚(DPGME),二甲基甲基膦酸酯(DMMP)和研究了二氯甲烷(DCM)。在本研究中,使用商用SnO2 [SnO2(C)]和通过沉淀法[SnO2(P)]制备的纳米SnO2来制备SnO2传感器。在DCM和乙腈的情况下,与SnO2(C)传感器相比,SnO2(P)传感器显示出更高的传感器响应。但是,在DMMP和DPGME的情况下,SnO2(C)传感器显示出比SnO2(P)传感器更高的响应。尤其是,随着煅烧温度从400°C升高到800°C,SnO2(P)传感器的响应会增加。这些结果可以通过以下事实来解释:基于SnO2的气体传感器的响应取决于在模拟气体检测中(0.1-0.5 ppm)的氧化锡的质地特性和化学试剂模拟物的分子大小。

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