Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5390967 | Chemical Physics Letters | 2006 | 6 Pages |
Abstract
Multiconfigurational SCF and second-order perturbation theory have been employed to study seven low-lying electronic states of the CoC molecule (X2Σ+, A2Î, B2Φ, C2Φ, D2Î , E2Î , and F2Σ+). Three doublet electronic states have been described for the first time: B2Φ (R0 = 1.632 Ã
, T0 = 8950 cmâ1, and Ïe = 993 cmâ1), C2Φ (R0 = 1.617 Ã
, T0 = 10455 cmâ1, and Ïe = 1159 cmâ1), and D2Î (R0 = 1.618 Ã
, T0 = 10767 cmâ1, and Ïe = 1105 cmâ1). The results support the previous assignment of the 13 000-14 500 cmâ1 band to the E2Î state but, unlike previous suggestions, we identify the (8Ï2)(3Ï4)(9Ï1)(1δ3)(4Ï1) electronic configuration to be the most relevant for its description. We identify the experimentally observed [14.0]2Σ+ state as the F2Σ+ electronic state of CoC.
Related Topics
Physical Sciences and Engineering
Chemistry
Physical and Theoretical Chemistry
Authors
Antonio Carlos Borin, Joao Paulo Gobbo, Björn O. Roos,