The low-lying valence and Rydberg excited states of HzSi=O are calculated with the multiple-reference configurationinteraction (MR CI) method. In order to characterize these excited states, the results are compared with those of HzC=O.
A CI pseudopotential-based description of the low-lying states of Ag O2
β Scribed by G. Bravo; A. Flores-Riveros; O. Novaro
- Publisher
- John Wiley and Sons
- Year
- 1990
- Tongue
- English
- Weight
- 563 KB
- Volume
- 37
- Category
- Article
- ISSN
- 0020-7608
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β¦ Synopsis
Abstract
Extensive SCFβLCAOβMO variational and perturbative configuration interaction (CI) calculations framed within an effective core potential approximation have been performed to determine the two experimentally observed geometrical isomers of A~g~ O~2~ and the interconversion route between them. These structural forms, associated to the groundβstate local minima, yield virtually the same energy, and their spontaneous interconversion is strongly indicated, which agrees fairly well with the experimental measurements. The reaction A~g~ + O~2~ β A~g~ O~2~ was theoretically analyzed along a CI fully optimized energy pathway for the ground and various excited states, within C~2__v__~ and C~s~ symmetry. Although a tightβion pair (A O) character is predicted for the ground state at the equilibrium geometries, its dissociation leads to neutral rather than to ionic fragments. The study of the reaction path within C~s~ symmetry shows an avoided crossing between the ground state and another ^2^Aβ³ potential curve where the former correlates adiabatically with the reactants A~g~(^2^S) + O~2~(^1^Ξ~g~). This indicates that the formation of the complex proceeds via a reactive state of molecular oxygen. The higher ^2^Aβ³ electronic curves correlate with the metal ^2^P excited state, and the oxygen binding is found to be less favorable. The present results are shown to have an important bearing on the experimentally known catalytic properties of oxygen adsorbed on silver surfaces.
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The low-lying states of the experimentally observed copper methylene complex are studied. The MO CI calculations nere carried out by the multireference CIPSI algorithm using suitably localized MOs. Qualitative arguments lead us to consider the "B, (d"'s'; (TX) and 'B, (d'"s'; ox) states of the CuCHz
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