Complete-active-space SCF and multi-reference configuration interaction calculations employing large Gaussian basis sets of the general contraction type have been carried out to determine the equilibrium structures and relative stabilities of the ground electronic state R 'I& of the acetylene cation
Theoretical studies of the ground and low-lying excited electronic states of the early transition metal dihydrides with state averaged MC SCF method
β Scribed by T. Shunmei Fujii; Suehiro Iwata
- Publisher
- Elsevier Science
- Year
- 1996
- Tongue
- English
- Weight
- 459 KB
- Volume
- 251
- Category
- Article
- ISSN
- 0009-2614
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β¦ Synopsis
The ground and low-lying excited electronic states, which are quasi-degenerated, of some dihydrides of the third-row metals, MH 2 (M = Ca, Sc, Ti, V, Cr, Mn), are examined with state averaged CAS SCF calculations for the qualitative discussions of valency of metal-hydrogen bonds. The potential energy surfaces (PESs) for C2v conformations are obtained as functions of bond angles and bond lengths. The PESs of almost all of the states in dihydrides studied in the present Letter are similar to each other and the characteristics of the chemical bonds of M-H are little affected by the electron configuration in the d orbitals.
π SIMILAR VOLUMES
The electronic structure and properties of the carbonyls TiCO, FeCO, and NiCO in the quintuplet, triplet, and singlet ground states and triplet, quintuplet, and triplet first electronic excited states, respectively, were studied using density functional Ε½ . Ε½ . theory DFT methods. The ADF program ve