Grotjahn Robin
Department of Chemistry, University of California, Irvine, 1102 Natural Sciences II, Irvine, California 92697-2025, USA.
J Chem Phys. 2023 Nov 7;159(17). doi: 10.1063/5.0173701.
The recent ωLH22t range-separated local hybrid (RSLH) is shown to provide outstanding accuracy for the notorious benchmark problem of the two lowest excited-state potential energy curves for the amino group twist in 4-(dimethylamino)benzonitrile (DMABN). However, the design of ωLH22t as a general-purpose functional resulted in less convincing performance for triplet excitations, which is an important advantage of previous LHs. Furthermore, ωLH22t uses 8 empirical parameters to achieve broad accuracy. In this work, the RSLH ωLH23ct-sir is constructed with minimal empiricism by optimizing its local mixing function prefactor and range-separation parameter for only 8 excitation energies. ωLH23ct-sir maintains the excellent performance of ωLH22t for the DMABN twist and charge-transfer benchmarks but significantly improves the errors for triplet excitation energies (0.17 vs 0.24 eV). Additional test calculations for the AE6BH6 thermochemistry test set and large dipole moment and static polarizability test sets confirm that the focus on excitation energies in the optimization of ωLH23ct-sir has not caused any dramatic errors for ground-state properties. Although ωLH23ct-sir cannot replace ωLH22t as a general-purpose functional, it is preferable for problems requiring a universally good description of localized and charge-transfer excitations of both singlet and triplet multiplicity. Current limitations on the application of ωLH23ct-sir and other RSLHs to the study of singlet-triplet gaps of emitters for thermally activated delayed fluorescence are discussed. This work also includes the first systematic analysis of the influence of the local mixing function prefactor and the range-separation parameter in an RSLH on different types of excitations.
最近的ωLH22t范围分离局部杂化泛函(RSLH)已被证明,对于4-(二甲基氨基)苯甲腈(DMABN)中氨基扭转的两个最低激发态势能曲线这一著名的基准问题,能提供出色的精度。然而,ωLH22t作为通用泛函的设计,在三重态激发方面的表现却不那么令人信服,而这是之前局部杂化泛函的一个重要优势。此外,ωLH22t使用8个经验参数来实现广泛的精度。在这项工作中,通过仅针对8个激发能优化其局部混合函数前置因子和范围分离参数,以最小的经验性构建了RSLH ωLH23ct-sir。ωLH23ct-sir在DMABN扭转和电荷转移基准测试中保持了ωLH22t的优异性能,但显著改善了三重态激发能的误差(0.17对0.24 eV)。对AE6BH6热化学测试集以及大偶极矩和静态极化率测试集的额外测试计算证实,在ωLH23ct-sir的优化中对激发能的关注并未导致基态性质出现任何显著误差。尽管ωLH23ct-sir不能作为通用泛函取代ωLH22t,但对于需要对单重态和三重态多重性的局域和电荷转移激发进行普遍良好描述的问题,它更具优势。讨论了目前ωLH23ct-sir和其他RSLH在用于热激活延迟荧光的发射体单重态 - 三重态能隙研究中的应用限制。这项工作还首次系统分析了RSLH中局部混合函数前置因子和范围分离参数对不同类型激发的影响。