Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5417182 | Journal of Molecular Structure: THEOCHEM | 2009 | 8 Pages |
Abstract
The electronic structure and geometries of substituted aminimides (RCONâN+(CH3)3) where R = H, F, OH, NH2, NâN+(CH3)3, NO, NO2, CN, CH3, CF3, CHC, CH2CH, C6H5, SiH3 have been examined using the B3LYP/6-311+G(d,p) model. For all aminimides (except when substituted with C6H5 and SiH3), NBO calculations locate one lone pair of the Nâ in the HOMO (pz) and the second lone pair in HOMO-3 (spx, x = 1.06-1.19). One lone pair of oxygen (LP1) fills the HOMO-1 (p orbital which is orthogonal to ÏCO). The ÏCO is the HOMO-2. There is a significant donor-acceptor interaction between the Nâ and the carbonyl group. Unlike other aminimides, when substituted with C6H5 and SiH3 the negative charge is mostly located on the carbonyl oxygen rather than on nitrogen. All RCONâN+(CH3)3 have a preference for the (Z)-conformation about the C(O)Nâ bond. The computed Gibbs free energy of activation (25 °C) for converting the (Z)-conformer into the (E)-conformer is in the range of 22-35 kcal/mol. The anionic nitrogen of RCONâN+(CH3)3 is more effective at charge transfer than an ordinary amide! For example, the second order perturbation stabilization as result of donor (Nâ)/acceptor (CO) interaction is ca. 100 kcal/mol for RCONâN+(CH3)3, while for similarly substituted amides is ca. 60 kcal/mol. The most important factors in negative hyperconjugation are the donation of the oxygen LP(2) into the adjacent antibonds Ï*CO-R (the second order stabilization energy gives a good linear correlation with the calculated CO stretching vibrational values) and Ï*CO-N-. Isodesmic reactions analysis at B3LYP/6-311 + G(d, p) level, G2 and G2MP2 supports the view that Ï donors (NH2, OH and F) are stabilizing the aminimides. The Gibbs free energy balance of the isodesmic reactions correlates linearly with the inductive and resonance substituent constants.
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Physical and Theoretical Chemistry
Authors
Mircea D. Gheorghiu, Ana Racoveanu,