Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5416440 | Journal of Molecular Structure: THEOCHEM | 2010 | 6 Pages |
Abstract
NBO analysis, ab initio molecular orbital (MP2/6-311+Gââ//MP2/6-311+Gââ) and hybrid-density functional theory (B3LYP/6-311+Gââ//MP2/6-311+Gââ) based methods were used to study the anomeric effects (AE) on the conformational properties of 1,2-oxathiane mono-S-oxide (1), 1,2-dithiane mono-S-oxide (2) and 1,2-thiaselenane mono-S-oxide (3). Both methods showed that the axial conformations of compounds 1-3 are more stable than their equatorial conformations. The MP2/6-311+Gââ//MP21/6-311+Gââ results showed that the Gibbs free energy difference (Gax â Geq) values (ÎGax-eq) between the axial and equatorial conformations of compound 1-3 are 4.08, 2.93 and 2.36 kcal molâ1, respectively. The calculated ÎGax-eq value for compound 2 is in excellent agreement with the reported experimental result (which has been obtained from a variable-temperature NMR experiment). Based on the optimized ground state geometries using the MP2/6-311+Gââ level of theory, the NBO analysis of donor-acceptor (bond-antibond) interactions revealed that the AE for compounds 1-3 are â44.57, â3.22 and â2.40 kcal molâ1, respectively. The decrease of the AE could explain the decrease of ÎGax-eq from compound 1 to 3. The correlations between the AE associated with the electronic delocalizations, dipole-dipole interactions, donor and acceptor orbital occupancies, donor and acceptor energies, the pairwise steric exchange energies (PSEE), structural parameters and conformational behavior of compounds 1-3 have been investigated.
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Authors
Alireza Zeinalinezhad, Davood Nori-Shargh, Zohreh Abbasi-Bakhtiari, James E. Boggs,