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◆ The Journal of Physical Chemistry Letters2026-01-11· Catalysis

Direct Observation of Hydroxyls Formed from Water and Oxygen on Ag(100)

Cole Easton, Sarah M. Stratton, Nima Rajabi, Nishadi Amarathunga, Elizabeth E. Happel, Avery S. Daniels, Adrian Hunt, Hojoon Lim, Vinita Lal, Nipun T.S.K. Dewage, Dennis Meier, Iradwikanari Waluyo, M. M. Montemore, E. Charles H. Sykes

原始摘要(英文原文)· Original abstract
High Resolution Image Download MS PowerPoint Slide The interaction of oxygen with silver is a key descriptor of the catalytic reactivity of silver nanoparticles which are ubiquitous in large-scale partial oxidation reactions like ethylene epoxidation. Despite Ag(100) being proposed as the most selective facet, it is less studied than (111) and (110) surfaces. Using scanning tunneling microscopy and synchrotron X-ray photoelectron spectroscopy, we report that, in addition to the well-known O adatoms formed from O 2 dissociation on Ag(100), hydroxyl groups (OH), at a binding energy of ∼ 531 eV, are also present. The O/OH ratio depends on exposure to water and surface temperature. These assignments are consistent with our density functional theory calculations, which indicate that the formation of two OH groups from an O atom and H 2 O molecule is exothermic. These results indicate that, in addition to O, OH is present even under ultrahigh vacuum conditions and therefore should be considered in proposed catalytic pathways.
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