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September 1, 2015ACS Catalysis110 citationsOpen Access

Insights into the Electronic Structure of the Oxygen Species Active in Alkene Epoxidation on Silver

TJTravis E. JonesTRTúlio C. R. RochaAKAxel Knop‐Gericke

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Abstract

High Resolution Image Download MS PowerPoint Slide Extensive density functional theory calculations of the O 1s binding energies, adsorption energies, and the experimentally measured in situ X-ray photoelectron spectra of oxygen on silver are reported in an effort to clarify which species are present during ethylene epoxidation. We find that the O 1s binding energy of an oxygen adatom increases near linearly with its adsorption energy due to the ionic nature of the Ag/O interaction. Thus, contrary to widespread assignments, a weakly bound oxygen adatom does not account for the electrophilic species with an O 1s binding energy of 530 eV that is thought to be active in ethylene epoxidation. Instead, we show that the only species with O 1s binding energies near 530 eV are covalently bound, which we find in our calculations, for example, when hydrogen or carbon are present.

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Cite This Study

Jones et al. (2015) studied this question.

synapsesocial.com/papers/6a6515950fba7776d1cd3aabhttps://doi.org/10.1021/acscatal.5b01543
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