S. Cohen, T.O. Sedgwick, et al.
MRS Proceedings 1983
The electronic structure of hydrogen chemisorbed on Ni(111) has been studied using angle-resolved polarization-dependent photoelectron spectroscopy with synchrotron radiation. For coverages from ∼0.01 to ∼0.1 monolayer, we observe a shift of the pZ-type Ni(111) surface state towards increased binding energies. At saturation coverage, direct transitions from sp-type bands are enhanced, whereas d-like interband transitions remain unchanged. We observe no split-off hydrogen-derived state. Since hydrogen is observed to bond only to sp-type orbitals, a simple metal (jellium) model is qualitatively applicable and can account for the lack of a split-off adsorbate state. © 1979 The American Physical Society.
S. Cohen, T.O. Sedgwick, et al.
MRS Proceedings 1983
M.A. Lutz, R.M. Feenstra, et al.
Surface Science
R.J. Gambino, N.R. Stemple, et al.
Journal of Physics and Chemistry of Solids
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Digital Discovery