| Literature DB >> 28049335 |
Sebastian P Sitkiewicz1, Josep M Oliva2, Juan Z Dávalos2, Rafael Notario2, Alfonso Saiz-Lopez2, Diego R Alcoba3, Ofelia B Oña4, Daniel Roca-Sanjuán1.
Abstract
The electronic states of atmospheric relevant molecules IBr and HgBr2 are reported, within the UV-Vis spectrum range (170nm≤λphoton≤600 nm) by means of the complete-active-space self-consistent field/multi-state complete-active-space second-order perturbation theory/spin-orbit restricted-active-space state-interaction (CASSCF/MS-CASPT2/SO-RASSI) quantum-chemical approach and atomic-natural-orbital relativistic-correlation-consistent (ANO-RCC) basis sets. Several analyses of the methodology were carried out in order to reach converged results and therefore to establish a highly accurate level of theory. Good agreement is found with the experimental data with errors not higher than around 0.1 eV. The presented analyses shall allow upcoming studies aimed to accurately determine the absorption cross sections of interhalogen molecules and compounds with Hg that are relevant to better comprehend the photochemical processes taking place in the atmosphere.Year: 2016 PMID: 28049335 DOI: 10.1063/1.4971856
Source DB: PubMed Journal: J Chem Phys ISSN: 0021-9606 Impact factor: 3.488