4.7 Article

Atomic and molecular oxygen adsorbed on (111) transition metal surfaces: Cu and Ni

Journal

JOURNAL OF CHEMICAL PHYSICS
Volume 142, Issue 15, Pages -

Publisher

AMER INST PHYSICS
DOI: 10.1063/1.4917259

Keywords

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Funding

  1. CONACyT Mexico under the program of CATEDRAS for young researchers
  2. Marie Curie Actions from the European Union [PIIFR-GA-2011-911070]
  3. American Chemical Society Petroleum Research Fund [54075-ND10]
  4. National Science Foundation [OCI-1053575]
  5. Texas Advances Computer Center (TACC) - National Science Foundation EPSCoR [1003907]
  6. Super Computing System (Mountaineer) at WVU - National Science Foundation EPSCoR [1003907]
  7. state of West Virginia (WVEPSCoR via the Higher Education Policy Commission)
  8. WVU

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Density functional theory is used to investigate the reaction of oxygen with clean copper and nickel [111]-surfaces. We study several alternative adsorption sites for atomic and molecular oxygen on both surfaces. The minimal energy geometries and adsorption energies are in good agreement with previous theoretical studies and experimental data. From all considered adsorption sites, we found a new O-2 molecular precursor with two possible dissociation paths on the Cu(111) surface. Cross barrier energies for the molecular oxygen dissociation have been calculated by using the climbing image nudge elastic band method, and direct comparison with experimental results is performed. Finally, the structural changes and adsorption energies of oxygen adsorbed on surface when there is a vacancy nearby the adsorption site are also considered. (C) 2015 AIP Publishing LLC.

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