Pérez-Juste Ignacio, Carballeira Luis
Departamento de Química Física, Facultad de Química, Universidade de Vigo, 36310 Vigo, Spain.
J Chem Phys. 2007 Oct 28;127(16):164303. doi: 10.1063/1.2777138.
The electronic structures of the HXY/XYH compounds (X[Double Bond]C,Si;Y[Double Bond]O,S) on the (2)A(') electronic ground state were investigated by applying the natural bond orbital (NBO) method to the computed B3LYP6-311G(**) wave functions. Different localized structures are proposed for the HXY and XYH isomers and the central XY unit is described as intermediate between a double and a triple bond in HCO, HCS, HSiO, and HSiS, similar to a double bond in COH, CSH, and SiSH, and clearly a single bond in SiOH. Through the comparison between the NBO results for the diatomic and hydrogenated compounds, the energy preferences on each pair of isomers and the computed geometrical parameters are explained. According to the structures proposed, the HXY compounds are sigma radicals with the spin density distributed along the molecular framework, while the XYH compounds are pi radicals with most of the unpaired spin located on an almost pure p orbital of the X atom. Finally, the amounts of spin density on natural atomic orbitals provided by the NBO method are used to explain the computed values of the isotropic and anisotropic hyperfine coupling constants.
通过将自然键轨道(NBO)方法应用于计算得到的B3LYP/6 - 311G(**)波函数,研究了处于(2)A'电子基态的HXY/XYH化合物(X = C、Si;Y = O、S)的电子结构。针对HXY和XYH异构体提出了不同的局域结构,并且中心XY单元在HCO、HCS、HSiO和HSiS中被描述为介于双键和三键之间,类似于COH、CSH和SiSH中的双键,而在SiOH中显然是单键。通过比较双原子化合物和氢化化合物的NBO结果,解释了每对异构体的能量偏好以及计算得到的几何参数。根据所提出的结构,HXY化合物是σ自由基,自旋密度沿分子骨架分布,而XYH化合物是π自由基,大部分未成对自旋位于X原子几乎纯的p轨道上。最后,利用NBO方法提供的自然原子轨道上的自旋密度量来解释各向同性和各向异性超精细耦合常数的计算值。