Department of Chemistry, University of York , Heslington, York YO10 5DD, U.K.
J Phys Chem A. 2013 Nov 27;117(47):12590-600. doi: 10.1021/jp408166m. Epub 2013 Nov 8.
We present a comparative assessment of the performance of the M06 suite of density functionals (M06, M06-2X, and M06-HF) against an MP2 benchmark for calculating the relative energies and geometric structures of the Cl(-)·arginine and Br(-)·arginine halide ion-amino acid clusters. Additional results are presented for the popular B3LYP density functional. The Cl(-)·arginine and Br(-)·arginine complexes are important prototypes for the phenomenon of anion-induced zwitterion formation. Results are presented for the canonical (noncharge separated) and zwitterionic (charge separated) tautomers of the clusters, as well as the numerous conformational isomers of the clusters. We find that all of the M06 functions perform well in terms of predicting the general trends in the conformer relative energies and identifying the global minimum conformer. This is in contrast to the B3LYP functional, which performed significantly less well for the canonical tautomers of the clusters where dispersion interactions contribute more significantly to the conformer energetics. We find that the M06 functional gave the lowest mean unsigned error for the relative energies of the canonical conformers (2.10 and 2.36 kJ/mol for Br(-)·arginine and Cl(-)·arginine), while M06-2X gave the lowest mean unsigned error for the zwitterionic conformers (0.85 and 1.23 kJ/mol for Br(-)·arginine and Cl(-)·arginine), thus providing insight into the types of physical systems where each of these functionals should perform best.
我们对 M06 系列密度泛函(M06、M06-2X 和 M06-HF)在计算 Cl(-)·精氨酸和 Br(-)·精氨酸卤化物离子-氨基酸簇的相对能量和几何结构方面的性能进行了比较评估,该评估是基于 MP2 基准。此外,还给出了流行的 B3LYP 密度泛函的结果。Cl(-)·精氨酸和 Br(-)·精氨酸配合物是阴离子诱导两性离子形成现象的重要原型。结果给出了配合物的典型(非电荷分离)和两性离子(电荷分离)互变异构体,以及配合物的许多构象异构体。我们发现,所有的 M06 函数在预测构象相对能量的一般趋势和识别全局最小构象方面表现良好。这与 B3LYP 功能形成对比,B3LYP 功能在对簇的典型互变异构体的性能明显较差,其中色散相互作用对构象能学的贡献更大。我们发现,M06 功能对典型构象的相对能量给出了最低的平均未修正误差(Br(-)·精氨酸和 Cl(-)·精氨酸分别为 2.10 和 2.36 kJ/mol),而 M06-2X 对两性离子构象给出了最低的平均未修正误差(Br(-)·精氨酸和 Cl(-)·精氨酸分别为 0.85 和 1.23 kJ/mol),从而深入了解这些功能各自应在哪些类型的物理系统中表现最佳。