Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
9594701 | Surface Science | 2005 | 12 Pages |
Abstract
A combination of photoelectron spectroscopy, temperature programmed desorption and low energy electron diffraction structure determinations have been applied to study the p(2Â ÃÂ 2) structures of pure hydrogen and co-adsorbed hydrogen and CO on Ni{1Â 1Â 1}. In agreement with earlier work atomic hydrogen is found to adsorb on fcc and hcp sites in the pure layer with H-Ni bond lengths of 1.74Â Ã
. The substrate interlayer distances, d12Â =Â 2.05Â Ã
and d23Â =Â 2.06Â Ã
, are expanded with respect to clean Ni{1Â 1Â 1} with buckling of 0.04Â Ã
in the first layer. In the co-adsorbed phase CO occupies hcp sites and only the hydrogen atoms on fcc sites remain on the surface. d12 is even further expanded to 2.08Â Ã
with buckling in the first and second layer of 0.06 and 0.02Â Ã
, respectively. The C-O, C-Ni, and H-Ni bond lengths are within the range of values also found for the pure adsorbates.
Keywords
Related Topics
Physical Sciences and Engineering
Chemistry
Physical and Theoretical Chemistry
Authors
W. Braun, H.-P. Steinrück, G. Held,