Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5377144 | Chemical Physics | 2006 | 10 Pages |
Abstract
The first systematic study of the Ti(H2O)n0,1+(n=1-5) series of clusters is herein presented at the level of the DFT B3LYP method in conjunction with electron core potential basis sets. The investigated structures are relevant for laser-induced and laser-ablation syntheses of titanium compounds, and also for fundamental spectroscopy studies of metal-bearing species in the gas phase. Calculated properties include optimal geometries, total energies, bond lengths, bond angles, natural orbital population analysis charges, and hydration dissociation energies inter alia. Present results reveal a strict correlation between the clusters total energy and their spin state. Without exception, the most stable neutral (cation) clusters Ti(H2O)1-50+ [Ti(H2O)1-51+] are those with spin state SÂ =Â 1 (SÂ =Â 3/2). Comparisons with a few available theoretical results show good agreement.
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Physical Sciences and Engineering
Chemistry
Physical and Theoretical Chemistry
Authors
Ju-Guang Han, J.A. Morales,