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首页> 外文期刊>ChemCatChem >Direct Evidence for the Participation of Oxygen Vacancies in the Oxidation of Carbon Monoxide over Ceria-Supported Gold Catalysts by using Operando Raman Spectroscopy
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Direct Evidence for the Participation of Oxygen Vacancies in the Oxidation of Carbon Monoxide over Ceria-Supported Gold Catalysts by using Operando Raman Spectroscopy

机译:通过使用Operando Raman光谱,通过使用Operando Raman光谱参加氧空位参与氧气职位空缺参与的氧气空位在二氧化铈负载的金催化剂上的氧化

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摘要

Supported gold catalysts are highly active for a variety of reactions, including low-temperature CO oxidation. It has been shown that reducible support materials, for example, ceria and titania, may significantly alter catalytic performance. However, the current understanding of the CO oxidation mechanism of such gold catalysts is still incomplete, as important details such as the activation of oxygen and the role of oxygen vacancies are unknown. To elucidate the role of the ceria support during room-temperature CO oxidation, we employed operando Raman spectroscopy by simultaneously recording the Raman spectra of the catalyst and the gas-phase FTIR spectra. Our results give first direct spectroscopic evidence for the participation of oxygen vacancies in the oxidation of CO over ceria-supported gold, which thus underlines the crucial role of the support material for detailed understanding of the mode of operation of supported gold catalysts.
机译:支持的金催化剂对于各种反应非常有效,包括低温共氧化。 已经表明,可降低的支持材料(例如,Ceria和Titania)可以显着改变催化性能。 然而,目前对这种金催化剂的共氧化机制的理解仍然不完整,因为重要细节如氧气激活和氧空位的作用是未知的。 为了阐明在室温CO氧化期间Ceria支持的作用,我们通过同时记录催化剂的拉曼光谱和气相FTIR光谱来使用Operando拉曼光谱。 我们的结果为氧气障碍参与在二氧化铈负载金的氧化中提供了第一直接光谱证据,从而强调了支持材料的关键作用,详细了解支持的金催化剂的运行方式。

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