Dipartimento di Chimica, Universitá di Perugia, 06123 Perugia, Italy.
J Phys Chem A. 2009 Dec 31;113(52):15355-65. doi: 10.1021/jp906415m.
In order to describe the umbrella inversion mode, which is characteristic of AB(3)-type molecules, we have introduced an alternative hyperspherical coordinate set based on a parametrization of Radau-Smith orthogonal vectors and have considered constraints which allow us to enforce the C(3v) symmetry. Structural properties and electronic energies at equilibrium and barrier configurations have been obtained at MP2 and CCSD(T) levels of theory. Energy profiles have been calculated using the CCSD(T) method with an aug-cc-pVQZ basis set. The NH(3) and H(3)O(+) umbrella inversion levels are obtained by the hyperquantization algorithm for a one-dimensional calculation, using a specially defined hyperangle as the inversion coordinate. The results are compared with experimental and theoretical energy levels, in particular, with those obtained by calculations based on two-dimensional models. The emerging picture of the umbrella inversion based on this hyperangular coordinate compares favorably with respect to the usual valence-type description.
为了描述 AB(3)-型分子的特征伞式反转模式,我们引入了一种基于 Radau-Smith 正交向量参数化的替代超球坐标集,并考虑了允许我们强制执行 C(3v) 对称的约束。在 MP2 和 CCSD(T)理论水平上获得了平衡和势垒构型的结构性质和电子能。使用 CCSD(T)方法和 aug-cc-pVQZ 基组计算了能量曲线。使用专门定义的超角作为反转坐标,通过一维计算的超量化算法获得 NH(3)和 H(3)O(+)伞式反转能级。将结果与实验和理论能级进行了比较,特别是与基于二维模型的计算结果进行了比较。基于这个超角坐标的伞式反转的出现情况与通常的价类型描述相比具有优势。