Computational study on the molecular structures and photoelectron spectra of bimetallic oxide clusters MW2O9(-/0) (M=V, Nb, Ta)

Chen, WJ; Zhang, CF; Zhang, XH; Zhang, YF; Huang, X

HERO ID

1749187

Reference Type

Journal Article

Year

2013

Language

English

PMID

23523755

HERO ID 1749187
In Press No
Year 2013
Title Computational study on the molecular structures and photoelectron spectra of bimetallic oxide clusters MW2O9(-/0) (M=V, Nb, Ta)
Authors Chen, WJ; Zhang, CF; Zhang, XH; Zhang, YF; Huang, X
Journal Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy
Volume 109
Page Numbers 125-132
Abstract Density functional theory (DFT) and coupled cluster theory (CCSD(T)) calculations are carried out to investigate the electronic and structural properties of a series of bimetallic oxide clusters MW2O9(-/0) (M=V, Nb, Ta). Generalized Koopmans' theorem is applied to predict the vertical detachment energies (VDEs) and simulate the photoelectron spectra (PES). Theoretical calculations at the B3LYP level yield singlet and doublet ground states for the bimetallic anionic and neutral clusters, respectively. All the clusters present the six-membered ring structures with different symmetries, except that the TaW2O9(-) cluster shows a chained style with a penta-coordinated tantalum atom. Spin density analyses reveal oxygen radical species in all neutral clusters, consistent with their structural characteristics. Moreover, additional calculations are performed to study the oxidation reaction of CO molecule with the W3O9(+) cation and the isoelectronic VW2O9 cluster, and results indicate that the introduction of vanadium at tungsten site can efficiently improve the oxidation reactivity.
Doi 10.1016/j.saa.2013.02.011
Pmid 23523755
Wosid WOS:000318835400017
Is Certified Translation No
Dupe Override No
Is Public Yes
Language Text English