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Adsorptions of SO2, SOF2, and SO2F2 on Pt-modified anatase (101) surface: Sensing mechanism study

机译:铂修饰的锐钛矿(101)表面上SO2,SOF2和SO2F2的吸附:传感机理研究

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The type and severity of faults occurring in gas-insulated switchgear (GIS) can be assessed by detecting SF6 decomposed gases, which is significant for fault diagnosis and online condition monitoring of GIS. Characteristic decomposition components of SF6 under partial discharge or overheating faults and first-principle density functional theory calculations are adopted to analyze the adsorption of SO2, SOF2, and SO2F2 on Pt-modified anatase (1 0 1) surface and to examine further the sensing mechanism of Pt-modified anatase-based gas sensor used to detect SO2, SOF2, and SO2F2. Results show that SO2F2 molecule more easily decomposes upon adsorption on the active Pt nanoparticle than SOF2 molecule. Meanwhile, SO2 molecule does not decompose. This finding explains the phenomenon in the sensing experiment of Pt-modified TiO2 nanotube array gas sensor, wherein the response of SO2F2 is higher than that of SOF2 at the optimal temperature of the sensor. Moreover, the responses of SO2F2 and SOF2 significantly change at the optimal temperature, whereas the response of SO2 is nearly unchanged. C) 2015 Elsevier B.V. All rights reserved.
机译:可以通过检测SF6分解气体来评估气体绝缘开关设备(GIS)中发生的故障的类型和严重性,这对于GIS的故障诊断和在线状态监测具有重要意义。采用局部放电或过热故障下的SF6的特征分解成分和第一原理密度泛函理论计算来分析SO2,SOF2和SO2F2在Pt修饰的锐钛矿(1 0 1)表面上的吸附并进一步研究其传感机理用于检测SO2,SOF2和SO2F2的基于Pt修饰的基于锐钛矿的气体传感器。结果表明,与SOF2分子相比,SO2F2分子在吸附到活性Pt纳米颗粒上时更容易分解。同时,SO2分子不会分解。这一发现解释了在Pt修饰的TiO2纳米管阵列气体传感器的传感实验中的现象,其中在传感器的最佳温度下,SO2F2的响应高于SOF2的响应。此外,SO2F2和SOF2的响应在最佳温度下会发生显着变化,而SO2的响应几乎没有变化。 C)2015 Elsevier B.V.保留所有权利。

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