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Detection of dimethyl methylphosphonate (DMMP) by tin dioxide-based gas sensor: Response curve and understanding of the reactional mechanism

机译:基于二氧化锡的气体传感器检测甲基膦酸二甲酯(DMMP):响应曲线和对反应机理的理解

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This paper deals with the detection of dimethyl methylphosphonate (DMMP), using tin dioxide-based gas sensors. One of the characteristics of this device is the functioning temperature, which ranges between 25 and 500℃. The results presented in the first part of this paper concern the study of the thermal degradation of DMMP vapours, in particular the identification and quantification of light and heavy degraded compounds by several analysis techniques (IR, NMR, GC). The second part of this paper is dedicated to the interpretation of the gas sensor's responses during the detection of DMMP and the determination of the origin of the electrical response of the sensor. Finally in the third part of this paper, we propose a reactional mechanism which describes the interactions between DMMP vapours and SnO_2 surface, that occurs during the detection of this phosporous compound.
机译:本文涉及使用基于二氧化锡的气体传感器检测甲基膦酸二甲酯(DMMP)。该设备的特点之一是工作温度范围为25至500℃。本文第一部分介绍的结果涉及对DMMP蒸气的热降解的研究,特别是通过几种分析技术(IR,NMR,GC)鉴定和定量分析轻,重降解的化合物。本文的第二部分致力于解释DMMP检测过程中气体传感器的响应,并确定传感器电响应的起源。最后,在本文的第三部分中,我们提出了一种反应机理,该机理描述了在检测该磷化合物的过程中发生的DMMP蒸气与SnO_2表面之间的相互作用。

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