Maurer Leonard R, Bursch Markus, Grimme Stefan, Hansen Andreas
Mulliken Center for Theoretical Chemistry, Institute for Physical and Theoretical Chemistry, University of Bonn, Beringstr. 4, 53115 Bonn, Germany.
J Chem Theory Comput. 2021 Oct 12;17(10):6134-6151. doi: 10.1021/acs.jctc.1c00659. Epub 2021 Sep 21.
Due to the principle lack of systematic improvement possibilities of density functional theory, careful assessment of the performance of density functional approximations (DFAs) on well-designed benchmark sets, for example, for reaction energies and barrier heights, is crucial. While main-group chemistry is well covered by several available sets, benchmark data for transition metal chemistry is sparse. This is especially the case for larger, chemically relevant molecules. Addressing this issue, we recently introduced the MOR41 benchmark which covers chemically relevant reactions of closed-shell complexes. In this work, we extend these efforts to single-reference open-shell systems and introduce the "reactions of open-shell single-reference transition metal complexes" (ROST61) benchmark set. ROST61 includes accurate coupled-cluster reference values for 61 reaction energies with a mean reaction energy of -42.8 kcal mol. Complexes with 13-93 atoms covering 20 d-block elements are included, but due to the restriction to single-reference open-shell systems, important elements such as iron or platinum could not be taken into account, or only to a small extent. We assess the performance of 31 DFAs in combination with three London dispersion (LD) correction schemes. Further, DFT-based composite methods, MP2, and a few semiempirical quantum chemical methods are evaluated. Consistent with the results for the MOR41 closed-shell benchmark, we find that the ordering of DFAs according to Jacob's ladder is preserved and that adding an LD correction is crucial, clearly improving almost all tested methods. The recently introduced rSCAN-3c composite method stands out with a remarkable mean absolute deviation (MAD) of only 2.9 kcal mol, which is surpassed only by hybrid DFAs with low amounts of Fock exchange (e.g., 2.3 kcal mol for TPSS0-D4/def2-QZVPP) and double-hybrid (DH) DFAs but at a significantly higher computational cost. The lowest MAD of only 1.6 kcal mol is obtained with the DH DFA PWPB95-D4 in the def2-QZVPP basis set approaching the estimated accuracy of the reference method. Overall, the ROST61 set adds important reference data to a sparsely sampled but practically relevant area of chemistry. At this point, it provides valuable orientation for the application and development of new DFAs and electronic structure methods in general.
由于密度泛函理论原则上缺乏系统改进的可能性,因此在精心设计的基准集上仔细评估密度泛函近似(DFA)的性能至关重要,例如对于反应能量和势垒高度。虽然几个可用的数据集很好地涵盖了主族化学,但过渡金属化学的基准数据却很稀少。对于更大的、具有化学相关性的分子来说尤其如此。为了解决这个问题,我们最近引入了MOR41基准,它涵盖了闭壳配合物的化学相关反应。在这项工作中,我们将这些努力扩展到单参考开壳体系,并引入了“开壳单参考过渡金属配合物的反应”(ROST61)基准集。ROST61包括61个反应能量的精确耦合簇参考值,平均反应能量为-42.8 kcal/mol。其中包含了覆盖20种d区元素、含有13 - 93个原子的配合物,但由于限于单参考开壳体系,铁或铂等重要元素未被考虑,或仅在很小程度上被考虑。我们评估了31种DFA与三种伦敦色散(LD)校正方案相结合的性能。此外,还评估了基于密度泛函理论的复合方法、MP2以及一些半经验量子化学方法。与MOR41闭壳基准的结果一致,我们发现根据雅各布阶梯对DFA进行的排序得以保留,并且添加LD校正至关重要,这明显改进了几乎所有测试方法。最近引入的rSCAN - 3c复合方法表现突出,其平均绝对偏差(MAD)仅为2.9 kcal/mol,仅被具有少量福克交换的杂化DFA(例如,TPSS0 - D4/def2 - QZVPP为2.3 kcal/mol)和双杂化(DH)DFA超过,但计算成本要高得多。在def2 - QZVPP基组中,DH DFA PWPB95 - D4获得了仅1.6 kcal/mol的最低MAD,接近参考方法的估计精度。总体而言,ROST61集为化学中一个采样稀疏但实际相关的领域添加了重要的参考数据。此时,它为新DFA和一般电子结构方法的应用与开发提供了有价值的指导。