THE LOCAL GEOMETRY OF REACTANT AND PRODUCT IN A SURFACE-REACTION - THE DEHYDROGENATION OF ADSORBED ETHYLENE ON NI(III)

Citation
S. Bao et al., THE LOCAL GEOMETRY OF REACTANT AND PRODUCT IN A SURFACE-REACTION - THE DEHYDROGENATION OF ADSORBED ETHYLENE ON NI(III), Surface science, 323(1-2), 1995, pp. 19-29
Citations number
36
Categorie Soggetti
Chemistry Physical
Journal title
ISSN journal
00396028
Volume
323
Issue
1-2
Year of publication
1995
Pages
19 - 29
Database
ISI
SICI code
0039-6028(1995)323:1-2<19:TLGORA>2.0.ZU;2-3
Abstract
Using Cls scanned-energy mode photoelectron diffraction based both on approximate ''direct'' methods and full multiple scattering modelling of spectra recorded in different emission angles covering a total spec tral data range of 1200 eV, the local geometry of adsorbed ethylene an d adsorbed acetylene on Ni(lll) have been determined in a detailed qua ntitative fashion. Ethylene adsorbed at low temperature (120 K) lies w ith its C-C axis parallel to the surface and in an aligned bridge site such that the C atoms lie approximately atop Ni atoms. Heating this s urface leads to dehydrogenation of the adsorbed ethylene to adsorbed a cetylene, and white the C-C axis remains parallel to the surface, the C-C bondlength and C-Ni layer spacing are reduced, and the acetylene o ccupies a cross-bridge site with the C atoms directly above inequivale nt hollow sites on the surface. Both adsorbed species show C-C bondlen gths larger than those of the associated gas-phase molecules, indicati ng a significant reduction of C-C bond order, in agreement with vibrat ional spectroscopic data. Possible geometrical reaction paths based on a concerted mechanism connecting the reactant and product are discuss ed.