Combined DFT and operando Spectroscopic Study of the Water-Gas Shift Reaction over Ceria based Catalysts: The Role of the Noble Metal and Ceria Faceting

M. Ziemba, D. Stark, C. Hess
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引用次数: 1

Abstract

: Ceria loaded with noble metals (Cu, Au) is a highly active material for the low-temperature water-gas shift reaction (LT-WGSR), but nevertheless details of the metal support interaction as well as the role of the ceria surface termination and the metal loading are still unclear. Using operando Raman and UV/Vis spectroscopy combined with theoretical density functional theory (DFT) calculations, we aim at a molecular-level understanding of LT-WGSR catalysts. In particular, by using this combined approach, we are able to draw conclusions about the reducibility state of the ceria support during reaction conditions. Our results show that the defect formation energy of the support does not play a major role for the WGSR, but rather other reaction steps such as the dissociation of water or the desorption of CO 2 .
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氧化铈基催化剂上水气转换反应的DFT和operando光谱联合研究:贵金属和氧化铈饰面的作用
负载贵金属(Cu, Au)的铈是低温水气转换反应(LT-WGSR)的高活性材料,但金属支撑相互作用的细节以及铈表面终止和金属负载的作用尚不清楚。利用operando Raman和UV/Vis光谱结合理论密度泛函理论(DFT)计算,我们的目标是在分子水平上理解LT-WGSR催化剂。特别是,通过使用这种组合方法,我们能够得出关于反应条件下二氧化铈载体的还原性状态的结论。我们的研究结果表明,载体的缺陷形成能量对WGSR起主要作用,而是其他反应步骤,如水的解离或CO 2的解吸。
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