Santra Golokesh, Calinsky Rivka, Martin Jan M L
Department of Molecular Chemistry and Materials Science, Weizmann Institute of Science, 7610001 Reḥovot, Israel.
J Phys Chem A. 2022 Aug 18;126(32):5492-5505. doi: 10.1021/acs.jpca.2c03922. Epub 2022 Aug 5.
To better understand the thermochemical kinetics and mechanism of a specific chemical reaction, an accurate estimation of barrier heights (forward and reverse) and reaction energies is vital. Because of the large size of reactants and transition state structures involved in real-life mechanistic studies (e.g., enzymatically catalyzed reactions), density functional theory remains the workhorse for such calculations. In this paper, we have assessed the performance of 91 density functionals for modeling the reaction energies and barrier heights on a large and chemically diverse data set (BH9) composed of 449 organic chemistry reactions. We have shown that range-separated hybrid functionals perform better than the global hybrids for BH9 barrier heights and reaction energies. Except for the PBE-based range-separated nonempirical double hybrids, range separation of the exchange term helps improve the performance for barrier heights and reaction energies. The 16-parameter Berkeley double hybrid, ωB97M(2), performs remarkably well for both properties. However, our minimally empirical range-separated double hybrid functionals offer marginally better accuracy than ωB97M(2) for BH9 barrier heights and reaction energies.
为了更好地理解特定化学反应的热化学动力学和机理,准确估计势垒高度(正向和逆向)以及反应能量至关重要。由于实际机理研究中涉及的反应物和过渡态结构规模较大(例如酶催化反应),密度泛函理论仍然是此类计算的主力方法。在本文中,我们评估了91种密度泛函在一个由449个有机化学反应组成的大型且化学性质多样的数据集(BH9)上模拟反应能量和势垒高度的性能。我们已经表明,对于BH9的势垒高度和反应能量,范围分离的杂化泛函比全局杂化泛函表现更好。除了基于PBE的范围分离非经验双杂化泛函外,交换项的范围分离有助于提高势垒高度和反应能量的性能。16参数的伯克利双杂化泛函ωB97M(2) 在这两种性质上表现都非常出色。然而,我们的最低经验范围分离双杂化泛函在BH9势垒高度和反应能量方面提供了比ωB97M(2) 略高的精度。