Faculty of Chemistry, Maria Curie-Skłodowska University, pl. Marii Curie-Skłodowskiej 3, 20-031 Lublin, Poland.
J Phys Chem A. 2012 Apr 19;116(15):3866-80. doi: 10.1021/jp212201f. Epub 2012 Mar 20.
An extended database of scaling factors for calculating fundamental frequencies within multiparameter scaled quantum mechanical (SQM) force field, and effective scaling frequency factor (ESFF) methods, based on various DFT force fields is reported. Twenty-six density functionals have been examined in conjunction with various Pople's and Dunning's basis sets of VDZ and VTZ quality. The calculations were based on a standard training set of 30 molecules proposed by Baker et al., for which 660 vibrational modes were assigned. Six functionals turned out to be particularly well-suited to the calculations oriented toward determination of scaled frequencies. They are B3LYP, B3PW91, B97, B97-1, B97-2, and O3LYP; they are all capable of providing reasonable scaled frequencies even for the small, 6-31G* basis set (rms <15 cm(-1)). Correlations between the quality of the scaled frequencies and the basis set quality as well as the accuracy of the predicted molecular geometry were investigated. The 6-311+G** basis set turned out to be preferable. In addition, correlation between the rms values in the scaled frequencies and the errors in the predicted geometric parameters was found. Both 11- and 9-parameter scaling frames are compared. It is shown that 9-parameter scaling is preferable in the middle range of the vibrational spectrum (500-2500 cm(-1)), provided it was based on high-quality force fields. Finally, statistical uncertainties of the calculated scaling factors are reported.
报告了一种基于各种 DFT 力场的多参数比例量子力学(SQM)力场和有效比例频率因子(ESFF)方法计算基频的扩展比例因子数据库。研究了 26 种密度泛函,并结合了各种 Pople 和 Dunning 的 VDZ 和 VTZ 质量的基组。这些计算是基于 Baker 等人提出的标准训练集 30 个分子,其中分配了 660 个振动模式。结果表明,有 6 种功能特别适合于确定比例频率的计算。它们是 B3LYP、B3PW91、B97、B97-1、B97-2 和 O3LYP;它们都能够提供合理的比例频率,即使对于小的 6-31G*基组(rms<15 cm-1)也是如此。研究了比例频率的质量与基组质量以及预测分子几何形状的准确性之间的关系。结果表明,6-311+G**基组是首选。此外,还发现了比例频率的 rms 值与预测几何参数误差之间的相关性。比较了 11 参量和 9 参量的比例框架。结果表明,在振动谱的中间范围(500-2500 cm-1),如果基于高质量的力场,则 9 参数比例是首选。最后,报告了计算比例因子的统计不确定度。