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Forster Energy Transfer and Davydov Splittings in Time-Dependent Density Functional Theory: Lessons from 2-Pyridone Dimer

机译:时间依赖性密度泛函理论中的Forster能量转移和Davydov分裂:2-吡啶酮二聚体的经验教训

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The Davydov or exciton splitting of vertical excitation energies is commonly used to estimate the excitation energy transfer rate between chromophores. Here we investigate the S1-S2 Davydov splitting in 2-pyridone dimer as a function of the monomer separation, ft We assess the ability of various functionals to reproduce the Davydov splitting at finite R predicted by the approximate coupled cluster singles doubles method CC2. While semilocal functionals fail qualitatively because of spurious charge-transfer intruder states, global hybrids with a large fraction of exact exchange, such as BHandH-LYP, reproduce the CC2 splittings within few wavenumbers. We analyze our results by comparison to lowest-order intermolecular perturbation theory in the spirit of Forster and Dexter. At equilibrium hydrogen bond distance, the Forster-Dexter splittings are too small by up to a factor of 2.
机译:垂直激发能的Davydov或激子分裂通常用于估计生色团之间的激发能传递速率。在这里,我们研究2-吡啶酮二聚体中S1-S2的达维多夫分裂与单体分离的关系,ft我们评估了通过近似耦合簇单键双打方法CC2预测的有限R值下,达维多夫分裂的各种功能。尽管半本地功能由于伪造电荷转移入侵者状态而定性地失败,但具有大量精确交换的全局混合程序(如BHandH-LYP)在少数波数内再现了CC2分裂。我们按照Forster和Dexter的精神,通过与最低阶分子间扰动理论进行比较来分析我们的结果。在平衡氢键距离下,Forster-Dexter裂隙太小了达2倍。

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