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首页> 外文期刊>Physical chemistry chemical physics: PCCP >An Au clusters related spill-over sensitization mechanism in SnO2-based gas sensors identified by operando HERFD-XAS, work function changes, DC resistance and catalytic conversion studies
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An Au clusters related spill-over sensitization mechanism in SnO2-based gas sensors identified by operando HERFD-XAS, work function changes, DC resistance and catalytic conversion studies

机译:通过操作HERFD-XAS识别的基于SnO2的气体传感器中与金团簇有关的溢出敏化机理,功函数变化,直流电阻和催化转化研究

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摘要

The role of Au additives in SnO2-based thick film gas sensors was investigated by a combination of operando investigation techniques, namely spectroscopic high energy resolved fluorescence detected X-ray absorption spectroscopy (HERFD-XAS) and simultaneous DC resistance and work function change measurements. The results have shown that the Au is present in the form of small metallic particles at the surface of the host metal oxide without changing its bulk or surface electronic properties. The sensitization effect of Au can therefore be attributed to the "spill-over effect", meaning that the Au particles enrich the surface of the active metal oxide with oxygen species which consequently react with reducing gases such as CO and H2. This is in contrast to the effect of Pd and Pt promoters which were found to be distributed at an atomic level on the surface and in the bulk of the supporting sensing material and therefore have a tremendous effect on its bulk and surface electronic properties.
机译:通过操作研究技术的组合,研究了金添加剂在基于SnO2的厚膜气体传感器中的作用,即光谱高能分辨荧光检测X射线吸收光谱(HERFD-XAS)以及同时的直流电阻和功函数变化测量。结果表明,Au以小金属颗粒的形式存在于主体金属氧化物的表面,而没有改变其体积或表面电子性质。因此,Au的增感作用可归因于“溢出效应”,这意味着Au颗粒使活性金属氧化物的表面富含氧,从而与还原气体如CO和H 2反应。这与Pd和Pt促进剂的作用相反,Pd和Pt促进剂被发现以原子水平分布在支持传感材料的表面和大部分中,因此对其体积和表面电子性能产生巨大影响。

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