R. Davis et al., QUANTITATIVE STRUCTURAL STUDY OF THE COADSORPTION OF CO AND K ON NI(111) USING PHOTOELECTRON DIFFRACTION, Surface science, 393(1-3), 1997, pp. 12-23
Scanned energy mode photoelectron diffraction measurements from the K
2p, O 1s and C 1s states of a Ni(111)(2 x 2)-K/nCO (n approximate to 2
) coadsorption structure have been coupled with multiple scattering si
mulations to determine the local adsorption structure. This structure
is compared with the structure of the Ni(111)c(4 x 2)-CO phase obtaine
d from a similar analysis of C 1s and O 1s photoelectron diffraction d
ata (which extends earlier work based on the C 1s signal alone), and o
f the structure of the Ni(111)(2x2)-K phase based on a previously-publ
ished analysis of K 2p and K 2s photoelectron diffraction. In the CO c
oadsorption phase the K atoms retain the atop site of the (2 x 2)-K ph
ase but with a K-Ni bondlength increased by 0.15+/-0.05 Angstrom, and
with the outermost Ni layer contraction of the (2 x 2)-K phase replace
d by an outer layer expansion. The CO molecules occupy both types of h
ollow site on the surface with a C-Ni outermost layer spacing of appro
ximately 1.30 Angstrom, but the inferred C-O bondlength shows no stati
stically significant change from its value in the absence of coadsorbe
d K. (C) 1997 Elsevier Science B.V.