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The adsorption of NO molecule on Cu2O(111) non-polar surface has been studied with periodic slab model by Perdew-Burke-Ernzerh approach of GGA within the framework of density functional theory. Two molecular orientations, N- and O-down, over different adsorption sites, Cu-CUS, CuCSA, O-SUF and O-SUB of the Cu2O(111) surface have been considered. The optimized results indicate that the N-down adsorption models are sable than the O-down ones. The adsorption energy for the N-down mode over Cu-CUS site is 113.5 kJ (.) mol(-1) while the corresponding value for the latter mode is 39.7 kJ (.) mol(-1). Upon adsorption on the Cu+ cation, the NO molecules forms a bent Cu+ -NO bond, and the tilted angles are different at the two orientations. The N-O stretching frequencies for both orientations are significantly red-shifted upon coordination. The frontier molecular orbitals analysis indicates that, for N-down and O-down orientation, the interaction between the adsorbed molecule and the substrate mainly arises from the anti-bonding pi orbital of NO and the d orbital of copper atom. Moreover the relaxation should be considered because of the effects of the geometry of Cu2O(111) surface upon the adsorption geometries and the binding energies of O-down adsorption.
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CHINESE JOURNAL OF INORGANIC CHEMISTRY
ISSN: 1001-4861
CN: 32-1185/O6
Year: 2006
Issue: 7
Volume: 22
Page: 1215-1221
0 . 5 8 3
JCR@2006
0 . 8 0 0
JCR@2023
ESI Discipline: CHEMISTRY;
JCR Journal Grade:4
Cited Count:
WoS CC Cited Count: 17
SCOPUS Cited Count:
ESI Highly Cited Papers on the List: 0 Unfold All
WanFang Cited Count:
Chinese Cited Count:
30 Days PV: 5
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