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Real-Time Gas-Phase Imaging over a Pd(110) Catalystduring CO Oxidation by Means of Planar Laser-Induced Fluorescence

机译:Pd(110)催化剂上的实时气相成像平面激光诱导荧光在CO氧化过程中

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摘要

The gas composition surrounding a catalytic sample has direct impact on its surface structure, which is essential when in situ investigations of model catalysts are performed. Herein a study of the gas phase close to a Pd(110) surface during CO oxidation under semirealistic conditions is presented. Images of the gas phase, provided by planar laser-induced fluorescence, clearly visualize the formation of a boundary layer with a significantly lower CO partial pressure close to the catalytically active surface, in comparison to the overall concentration as detected by mass spectrometry. The CO partial pressure variation within the boundary layer will have a profound effect on the catalysts’ surface structure and function and needs to be taken into consideration for in situ model catalysis studies.
机译:催化样品周围的气体成分对其表面结构有直接影响,这在进行模型催化剂的原位研究时必不可少。本文介绍了在半现实条件下在CO氧化过程中靠近Pd(110)表面的气相的研究。与通过质谱法检测到的总浓度相比,由平面激光诱导的荧光提供的气相图像可以清晰地观察到边界层的形成,该边界层具有接近催化活性表面的明显较低的CO分压。边界层内的CO分压变化将对催化剂的表面结构和功能产生深远影响,因此在原位模型催化研究中需要考虑到这一点。

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