Hermida-Ramón Jose M, Graña Ana M
Departamento de Química Física, Facultade de Química, Universidade de Vigo, Campus Lagoas Marcosende s/n, 36200 Vigo, Galicia, Spain.
J Comput Chem. 2007 Jan 30;28(2):540-6. doi: 10.1002/jcc.20568.
Ab initio complete optimizations at MP2/6-31++G** level have been performed in the T-shaped geometry of the benzene-benzene and benzene-naphthalene complexes. To check the effect of the basis set superposition error (BSSE), optimizations have been done in the BSSE corrected and BSSE uncorrected potential energy surfaces. The BSSE effect in the calculation of the Hessian has also been evaluated to check its influence in the frequency values. Quantum theory atoms in molecules (QTAIM) calculations have also been performed on both dimers. Intermolecular energies differ around a 25% when the optimization is performed with or without counterpoise corrected gradients. The influence of BSSE is also noticeable in the distances. Frequency shifts show big changes because of the BSSE. Thus, uncorrected values are up 350% larger than corrected ones. The hypotheses given in the literature to explain the origin of the blue-shifting hydrogen bond do not seem to give a suitable explanation for all characteristics of the behavior found in the studied systems.
在苯 - 苯和苯 - 萘配合物的T形几何结构中,已在MP2/6 - 31++G**水平上进行了从头算完全优化。为了检验基组叠加误差(BSSE)的影响,已在经BSSE校正和未经BSSE校正的势能面上进行了优化。还评估了在计算 Hessian 矩阵时的BSSE效应,以检查其对频率值的影响。还对两种二聚体进行了分子中的量子理论原子(QTAIM)计算。当使用或不使用平衡校正梯度进行优化时,分子间能量相差约25%。BSSE对距离的影响也很明显。由于BSSE,频移显示出很大变化。因此,未校正的值比校正后的值大350%。文献中给出的解释蓝移氢键起源的假设似乎并不能对所研究体系中发现的行为的所有特征给出合适的解释。