Shu Yinan, Parker Kelsey A, Truhlar Donald G
Department of Chemistry, Chemical Theory Center, and Minnesota Supercomputing Institute, University of Minnesota , Minneapolis, Minnesota 55455-0431, United States.
J Phys Chem A. 2017 Dec 28;121(51):9728-9735. doi: 10.1021/acs.jpca.7b11400. Epub 2017 Dec 18.
Recently we have developed the dual-functional Tamm-Dancoff approximation (DF-TDA) method. DF-TDA is an alternative to linear-response time-dependent density functional theory (LR-TDDFT) with the advantage of providing a correct double-cone topology of S/S conical intersections. In the DF-TDA method, we employ different functionals, which are denoted G and F, for orbital optimization and Hamiltonian construction. We use the notation DF-TDA/G:F. In the current work, we propose that G be the same as F except for having 100% Hartree-Fock exchange. We use the notation F100 to denote functional F with this modification. A motivation for this is that functionals with 100% Hartree-Fock exchange are one-electron self-interaction-free. Here we validate the use of F100/M06 to compute vertical excitation energies and the global potential energy surface of ammonia near a conical intersection to further validate the F100 method for photochemical problems.
最近我们开发了双功能的塔姆-丹科夫近似(DF-TDA)方法。DF-TDA是线性响应含时密度泛函理论(LR-TDDFT)的一种替代方法,其优点是能提供正确的S/S锥形交叉的双锥拓扑结构。在DF-TDA方法中,我们采用不同的泛函,分别记为G和F,用于轨道优化和哈密顿量构建。我们使用DF-TDA/G:F的表示法。在当前工作中,我们提出除了具有100%的哈特里-福克交换外,G与F相同。我们使用F100来表示具有此修改的泛函F。这样做的一个动机是具有100%哈特里-福克交换的泛函不存在单电子自相互作用。在此,我们验证使用F100/M06来计算垂直激发能以及氨在锥形交叉附近的全局势能面,以进一步验证F100方法在光化学问题中的适用性。