Jiang Wanyi, Laury Marie L, Powell Mitchell, Wilson Angela K
Department of Chemistry and Center for Advanced Scientific Computing and Modeling (CASCaM), University of North Texas, Denton, Texas 76203-5017, United States.
J Chem Theory Comput. 2012 Nov 13;8(11):4102-11. doi: 10.1021/ct300455e. Epub 2012 Sep 6.
The performance of 13 density functionals, including hybrid-GGA, hybrid-meta-GGA, and double-hybrid functionals, in combination with the correlation consistent basis sets, has been evaluated for the prediction of gas phase enthalpies of formation for a large set of 3d transition-metal-containing molecules with versatile bonding features. Of the methods studied, the hybrid B97-1 functional and the double hybrid functional mPW2-PLYP exhibit the best overall performance with mean absolute deviations (MAD) from experimental data of 7.2 and 7.3 kcal mol(-1), respectively. For single reference molecules, where dynamic correlation predominates, the results of the hybrid functionals B97-1, B98, and ωB97X and the double hybrid functionals B2-PLYP, B2GP-PLYP, and mPW2-PLYP yield the smallest deviations from the experimental enthalpies of formation. For the prediction of thermodynamic properties of coordination complexes including metal carbonyls, B97-1 and mPW2-PLYP are the most promising functionals of those investigated. When the size of the molecule is considered, B97-1 and B98 outperform mPW2-PLYP for diatomics and triatomics, while mPW2-PLYP yields the lowest MAD for larger molecules.
已评估了13种密度泛函(包括杂化广义梯度近似(hybrid-GGA)、杂化meta-广义梯度近似(hybrid-meta-GGA)和双杂化泛函)与相关一致基组相结合时,对一大组具有多种键合特征的含3d过渡金属分子的气相生成焓的预测性能。在所研究的方法中,杂化B97-1泛函和双杂化泛函mPW2-PLYP表现出最佳的整体性能,与实验数据的平均绝对偏差(MAD)分别为7.2和7.3 kcal mol⁻¹。对于以动态相关为主的单参考分子,杂化泛函B97-1、B98和ωB97X以及双杂化泛函B2-PLYP、B2GP-PLYP和mPW2-PLYP的结果与实验生成焓的偏差最小。对于包括金属羰基化合物在内的配位络合物的热力学性质预测,B97-1和mPW2-PLYP是所研究的最有前景的泛函。考虑分子大小时,对于双原子和三原子分子,B97-1和B98优于mPW2-PLYP,而对于较大分子,mPW2-PLYP的平均绝对偏差最低。