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氧化铈结合一氧化碳的振动频率:传统密度泛函理论方法面临的挑战

Vibrational Frequencies of Cerium-Oxide-Bound CO: A Challenge for Conventional DFT Methods.

作者信息

Lustemberg Pablo G, Plessow Philipp N, Wang Yuemin, Yang Chengwu, Nefedov Alexei, Studt Felix, Wöll Christof, Ganduglia-Pirovano M Verónica

机构信息

Institute of Physics Rosario, IFIR, National Scientific and Technical Research Council, CONICET, and National University of Rosario, UNR, S2000EKF Rosario, Santa Fe, Argentina.

Institute of Catalysis and Petrochemistry, ICP, Spanish National Research Council, CSIC, 28049 Madrid, Spain.

出版信息

Phys Rev Lett. 2020 Dec 18;125(25):256101. doi: 10.1103/PhysRevLett.125.256101.

Abstract

In ceria-based catalysis, the shape of the catalyst particle, which determines the exposed crystal facets, profoundly affects its reactivity. The vibrational frequency of adsorbed carbon monoxide (CO) can be used as a sensitive probe to identify the exposed surface facets, provided reference data on well-defined single crystal surfaces together with a definitive theoretical assignment exist. We investigate the adsorption of CO on the CeO_{2}(110) and (111) surfaces and show that the commonly applied DFT(PBE)+U method does not provide reliable CO vibrational frequencies by comparing with state-of-the-art infrared spectroscopy experiments for monocrystalline CeO_{2} surfaces. Good agreement requires the hybrid DFT approach with the HSE06 functional. The failure of conventional density-functional theory (DFT) is explained in terms of its inability to accurately describe the facet- and configuration-specific donation and backdonation effects that control the changes in the C─O bond length upon CO adsorption and the CO force constant. Our findings thus provide a theoretical basis for the detailed interpretation of experiments and open up the path to characterize more complex scenarios, including oxygen vacancies and metal adatoms.

摘要

在基于二氧化铈的催化中,决定暴露晶面的催化剂颗粒形状对其反应活性有深远影响。如果存在关于明确的单晶表面的参考数据以及明确的理论归属,吸附一氧化碳(CO)的振动频率可作为识别暴露表面晶面的灵敏探针。我们研究了CO在CeO₂(110)和(111)表面的吸附,并通过与单晶CeO₂表面的最新红外光谱实验进行比较,表明常用的DFT(PBE)+U方法不能提供可靠的CO振动频率。良好的一致性需要采用具有HSE06泛函的杂化DFT方法。传统密度泛函理论(DFT)的失败是由于其无法准确描述晶面和构型特定的给予和反馈给予效应,这些效应控制着CO吸附时C─O键长的变化以及CO力常数。因此,我们的研究结果为详细解释实验提供了理论基础,并为表征更复杂的情况(包括氧空位和金属吸附原子)开辟了道路。

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