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Comparison of Spin-Flip TDDFT-Based Conical Intersection Approaches with XMS-CASPT2

机译:基于XMS-CASPT2的旋转翻转TDDFT的锥形交集方法的比较

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Determining conical intersection geometries is of key importance to understanding the photochemical reactivity of molecules. While many small- to medium-sized molecules can be treated accurately using multireference approaches, larger molecules require a less computationally demanding approach. In this work, minimum energy crossing point conical intersection geometries for a series of molecules have been studied using spin-flip TDDFT (SF-TDDFT), within the Tamm-Dancoff Approximation, both with and without explicit calculation of nonadiabatic coupling terms, and compared with both XMS-CASPT2 and CASSCF calculated geometries. The less computationally demanding algorithms, which do not require explicit calculation of the nonadiabatic coupling terms, generally fare well with the XMS-CASPT2 reference structures, while the relative energetics are only reasonably replicated with the MECP structure as calculated with the BHHLYP functional and full nonadiabatic coupling terms. We also demonstrate that, occasionally, CASSCF structures deviate quantitatively from the XMS-CASPT2 structures, showing the importance of including dynamical correlation.
机译:确定锥形交叉点几何形式是理解分子的光化学反应性的关键重要性。虽然使用多引导方法可以准确地治疗许多小于中等大小的分子,但较大的分子需要较少的计算要求苛刻的方法。在这项工作中,使用旋转翻转TDDFT(SF-TDDFT)研究了一系列分子的最小能量交叉点锥形交叉点几何,在TAMM-DANCOFF近似,无论是在不明确的非等级耦合术语的情况下,还使用了并不明确计算XMS-CASPT2和CASSCF计算的几何形状。较少的计算上要求苛刻的算法,其不需要明确计算非等级耦合术语,通常与XMS-CASPT2参考结构很好,而相对能量仅与MECP结构合理地复制,如用BHHLYP功能和完全非抗动性计算耦合术语。我们还证明,偶尔,CASSCF结构从XMS-CASPT2结构定量偏离,显示包括动态相关的重要性。

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