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Operando monitoring of a room temperature nanocomposite methanol sensor

机译:Operando monitoring of a room temperature nanocomposite methanol sensor

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The sensing of volatile organic compounds by composites containing metal oxide semiconductors is typically explained via adsorption–desorption and surface electrochemical reactions changing the sensor's resistance. The analysis of molecular processes on chemiresistive gas sensors is often based on indirect evidence, whereas in situ or operando studies monitoring the gas/surface interactions enable a direct insight. Here we report a cross-disciplinary approach employing spectroscopy of working sensors to investigate room temperature methanol detection, contrasting well-characterized nanocomposite (TiO2@rGO-NC) and reduced-graphene oxide (rGO) sensors. Methanol interactions with the sensors were examined by (quasi) operando-DRIFTS and in situ-ATR-FTIR spectroscopy, the first paralleled by simultaneous measurements of resistance. The sensing mechanism was also studied by mass spectroscopy (MS), revealing the surface electrochemical reactions. The operando and in situ spectroscopy techniques demonstrated that the sensing mechanism on the nanocomposite relies on the combined effect of methanol reversible physisorption and irreversible chemisorption, sensor modification over time, and electron/O2 depletion–restoration due to a surface electrochemical reaction forming CO2 and H2O.
机译:挥发性有机化合物的检测含有金属氧化物半导体的复合材料通常是通过adsorption-desorption解释吗和表面电化学反应发生变化传感器的电阻。分子过程chemiresistive气体传感器通常是基于间接证据,而在吗原位或operando研究监测气体/表面相互作用使直接的洞察力。这里我们报告一个跨学科的方法采用光谱传感器来工作研究常温甲醇检测,对比良好的纳米复合材料(TiO2@rGO-NC)和氧化reduced-graphene (rGO)传感器。(准)operando-DRIFTS和检查的吗situ-ATR-FTIR光谱学,第一个平行同时测量的阻力。传感机理也研究了质量光谱学(MS),露出水面电化学反应。表明原位光谱技术纳米复合材料的传感机制的依赖在甲醇可逆的综合效应物理吸附不可逆的化学吸收作用,传感器改变随着时间的推移,和电子/ O2depletion-restoration由于表面电化学反应形成二氧化碳和水。

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