Article ID Journal Published Year Pages File Type
5416312 Journal of Molecular Structure: THEOCHEM 2010 5 Pages PDF
Abstract
Theoretical study of several benzyl nitrites have been performed using quantum computational ab initio RHF and density functional B3LYP and B3PW91 methods with 6-31G∗∗ basis set. Geometries obtained from DFT calculations were used to perform NBO analysis. It is noted that weakness in the O3-N2 sigma bond is due to nO1→σO3-N2∗ delocalisation and is responsible for the longer O3-N2 bond lengths in the selected benzyl nitrites. It is also noted that decreased occupancy of the localized σO3-N2 orbital in the idealized Lewis structure, or increased occupancy of σO3-N2∗ of the non-Lewis orbital, and their subsequent impact on molecular stability and geometry (bond lengths) are related with the resulting p character of the corresponding sulfur natural hybrid orbital (NHO) of σO3-N2 bond orbital. In addition, the charge transfer energy decreases with the increasing of the Hammett constants of substituent groups.
Related Topics
Physical Sciences and Engineering Chemistry Physical and Theoretical Chemistry
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