Department of Chemistry , Kyungpook National University , Daegu 41566 , Republic of Korea.
Department of Chemistry , Seoul National University , Seoul 151747 , Republic of Korea.
J Phys Chem A. 2019 Sep 19;123(37):7991-8000. doi: 10.1021/acs.jpca.9b07556. Epub 2019 Sep 5.
The mixed-reference spin-flip (MRSF) time-dependent density functional theory (TDDFT) method eliminates the notorious spin contamination of SF-TDDFT, thus enabling identification of states of proper spin-symmetry for automatic geometry optimization and molecular dynamics simulations. Here, we analyze and optimize the MRSF-TDDFT in the calculations of the vertical excitation energies (VEEs) and the singlet-triplet (ST) gaps. The dependence of the obtained VEEs and ST gaps on the intrinsic parameters of the MRSF-TDDFT method is investigated, and prescriptions for the proper use of the method are formulated. For VEEs, MRSF-TDDFT displays similar or better accuracy than SF-TDDFT (ca. 0.5 eV), while considerably outperforming the LR-TDDFT for the ST gaps. As a result, a new functional of STG1X (dubbed here), especially for ST gaps is suggested on the basis of splitting between the components of the atomic multiplets.
混合参考自旋翻转(MRSF)含时密度泛函理论(TDDFT)方法消除了 SF-TDDFT 的严重自旋污染,从而能够为自动几何优化和分子动力学模拟识别具有适当自旋对称性的状态。在这里,我们分析和优化了 MRSF-TDDFT 在垂直激发能(VEE)和单重态-三重态(ST)能隙计算中的应用。研究了所得到的 VEE 和 ST 能隙对 MRSF-TDDFT 方法内在参数的依赖性,并制定了该方法的正确使用规范。对于 VEE,MRSF-TDDFT 的准确性与 SF-TDDFT(约 0.5 eV)相似或更好,而对于 ST 能隙,其性能明显优于 LR-TDDFT。因此,基于原子多谱线分量之间的分裂,我们提出了一个新的 STG1X 函数(这里称为 STG1X),特别是用于 ST 能隙。