Abstract
X-ray photoemission spectroscopy is a standard technique for materials characterization and the O 1s binding energy is commonly measured for oxides. Here we use density functional theory calculations to investigate how the O 1s binding energy in CeO2(111) is influenced by the presence of oxygen vacancies. The case with point vacancies in CeO2(111) is compared to complete reduction to Ce2O3. Reduction of CeO2 by oxygen vacancies is found to have a minor effect on the O 1s binding energy. The O 1s binding energy is instead clearly changed when the character of the chemical bond for the considered oxygen atom is modified by, for example, the formation of OH-groups or carbonates.
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Bosio, N., Schaefer, A., & Grönbeck, H. (2022). Can oxygen vacancies in ceria surfaces be measured by O1s photoemission spectroscopy? Journal of Physics Condensed Matter, 34(17). https://doi.org/10.1088/1361-648X/ac4f7b
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