Chesnut D B
P. M. Gross Chemical Laboratory, Duke University, Durham, North Carolina 27708, USA.
J Phys Chem A. 2005 Dec 29;109(51):11962-6. doi: 10.1021/jp0555910.
Calculations on the hydrates, dimer, and trimer of phosphoric acid were carried out in an effort to obtain a viable model of the phosphorus NMR chemical shielding in 85% phosphoric acid solution. The theoretical approaches used the gauge-including-atomic-orbital (GIAO) 6-311+G(nd,p) basis set at both scaled density functional theory (sB3LYP) and estimated infinite order Møller-Plesset (EMPI) approaches and with the aug-cc-pvtz basis in the sB3LYP approach. Shieldings and hydrogen bonding stabilization energies are similar in the three approaches and indicate that the faster sB3LYP/6-311+G(nd,p) approach can be used with larger systems. The changes in shielding compared to the isolated species are small and suggest that the undissociated acid dihydrate could serve as a model entity for modeling the phosphorus shielding in concentrated phosphoric acid solution.
为了获得85%磷酸溶液中磷核磁共振化学屏蔽的可行模型,对磷酸的水合物、二聚体和三聚体进行了计算。理论方法在标度密度泛函理论(sB3LYP)和估计的无限阶微扰理论(EMPI)方法中均采用包含规范的原子轨道(GIAO)6-311+G(nd,p)基组,在sB3LYP方法中采用aug-cc-pvtz基组。三种方法中的屏蔽和氢键稳定能相似,表明速度更快的sB3LYP/6-311+G(nd,p)方法可用于更大的体系。与孤立物种相比,屏蔽的变化很小,这表明未解离的酸二水合物可作为模拟浓磷酸溶液中磷屏蔽的模型实体。