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The Bond-Energy Bond-Order (BEBO) Model of Chemisorption
Author(s) -
W. H. Weinberg
Publication year - 1973
Publication title -
journal of vacuum science and technology
Language(s) - English
Resource type - Journals
eISSN - 2331-1754
pISSN - 0022-5355
DOI - 10.1116/1.1318049
Subject(s) - chemisorption , bond order , sextuple bond , bond energy , bond length , chemistry , bond strength , binding energy , single bond , chemical bond , molecule , bent bond , chemical physics , adsorption , computational chemistry , atomic physics , physics , organic chemistry , adhesive , alkyl , layer (electronics)
The bond-energy bond-order (BEBO) model of chemisorption allows an estimate to be made of the interaction energy between a gaseous specie and a solid surface as a function of either bond length or bond order, i.e., the length or order of either the gas-surface bond being formed or the bond of the gaseous molecule being broken. The relationship between bond energy and either bond length or bond order is deduced from spectroscopic correlations for gaseous molecules, and a linear relationship between bond energy and bond order is assumed for the surface-adsorbate interaction. The geometry of the surface orbitals is taken to be that predicted by the crystal field model. The model allows a prediction of several relevant quantities in gas-surface interactions, namely: (1) binding energies for molecular adsorbed species, (2) binding energies for atomically adsorbed species, (3) activation energies to chemisorption, and (4) activation energies to dissociative chemisorption. The model is illustrated for the adsorption of H_2, CO, NO and O_2 on Pt, W and Ni surfaces.

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