Center for Quantum Dynamics, Pohang University of Science and Technology, Pohang37673, South Korea.
Department of Chemistry, Kyungpook National University, Daegu41566, South Korea.
J Chem Theory Comput. 2023 Feb 14;19(3):953-964. doi: 10.1021/acs.jctc.2c01036. Epub 2023 Jan 18.
Relativistic mixed-reference spin-flip (MRSF)-TDDFT is developed considering the spin-orbit coupling (SOC) within the mean-field approximation. The resulting SOC-MRSF faithfully reproduces the experiments with very high accuracy, which is also consistent with the values by four-component (4c) relativistic CASSCF and 4c-CASPT2 in the spin-orbit-energy splitting calculations of the C, Si, and Ge atoms. Even for the fifth-row element Sn, the SOC-MRSF yielded accurate splittings (∼ 3 % error). In the SOC calculations of the molecular 4-thiothymine with a third-row element, SOC-MRSF values are in excellent agreement with those of the SO-GMC-QDPT2 level, regardless of geometries and exchange-correlation functionals. The same SOC-MRSF predicted the anticipated chance of S (π*) → T (ππ*) intersystem crossing, even in thymine with only second-row elements. With its accuracy and practicality, thus, SOC-MRSF is a promising electronic structure protocol in challenging situations such as nonadiabatic molecular dynamics (NAMD) incorporating both internal conversions and intersystem crossings in large systems.
相对论混合参考自旋翻转(MRSF)-TDDFT 在平均场近似中考虑了自旋轨道耦合(SOC)。所得的 SOC-MRSF 非常准确地再现了实验,与四分量(4c)相对论 CASSCF 和 4c-CASPT2 在 C、Si 和 Ge 原子的自旋轨道能量分裂计算中的值一致。即使对于第五周期元素 Sn,SOC-MRSF 也产生了准确的分裂(∼3%的误差)。在具有第三周期元素的分子 4-硫代胸腺嘧啶的 SOC 计算中,SOC-MRSF 值与 SO-GMC-QDPT2 水平非常吻合,无论几何形状和交换相关泛函如何。相同的 SOC-MRSF 预测了 S(π*)→T(ππ*)系间窜跃的预期机会,即使在只有第二周期元素的胸腺嘧啶中也是如此。因此,SOC-MRSF 具有准确性和实用性,是在具有挑战性的情况下(例如包含内部转换和系间窜跃的非绝热分子动力学(NAMD))的一种很有前途的电子结构协议,适用于大型系统。