STRUCTURES AND ENERGIES OF VARIOUS ISOMERS OF DITHIONOUS ACID, H2S2O4, AND OF ITS ANION HS2O4-

Citation
Y. Drozdova et al., STRUCTURES AND ENERGIES OF VARIOUS ISOMERS OF DITHIONOUS ACID, H2S2O4, AND OF ITS ANION HS2O4-, The journal of physical chemistry. A, Molecules, spectroscopy, kinetics, environment, & general theory, 102(6), 1998, pp. 990-996
Citations number
27
Categorie Soggetti
Chemistry Physical
ISSN journal
10895639
Volume
102
Issue
6
Year of publication
1998
Pages
990 - 996
Database
ISI
SICI code
1089-5639(1998)102:6<990:SAEOVI>2.0.ZU;2-R
Abstract
Ab initio molecular orbital calculations at various, correlated levels of theory have been performed on eight isomers of the [H,O-4,S-2](-) anion and six forms of [H-2,O-4,S-2]. For the former species, the hypo thetical O3SSOH- (9) ion is identified as the lowest energy isomer usi ng second-order Moller-Plesset perturbation theory or the CCSD(T) meth od, with the protonated dithionite ion, O2SSO2H- (6), being only margi nally (less than 5 kJ mol(-1) at 25 degrees C) higher in energy, In co ntrast, the B3LYP density functional predicts a rather different order of relative stabilities, with O2SSO2H- (6) as the by far most stable ion, 6 is stable with respect to dissociation into SO2 and HOSO- or in to SO2.- and HOSO. (which is more stable than HSO2.). For the species of composition H2S2O4 the cagelike dithionous acid molecule (HO)O2SSO2 (OH) (14) represents the global minimum at all four levels;of theory. However, also for this species, the relative stabilities predicted by the B3LYP approach differ considerably from results obtained from the conventional wave function-based methods. 14 is stabilized by two very strong intramolecular hydrogen bonds (symmetry C-2) The homolytic dis sociation of 14 at the SS bond is strongly endothermic, but the molecu le is unstable with respect to dissociation into H2SO2 and SO2. The ha rmonic wavenumbers and infrared intensities of the fundamental vibrati ons of 6 and 14 are given.