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首页> 外文期刊>Journal of chemical theory and computation: JCTC >First Principle Prediction of Intramolecular Singlet Fission and Triplet Triplet Annihilation Rates
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First Principle Prediction of Intramolecular Singlet Fission and Triplet Triplet Annihilation Rates

机译:分子内单次裂变的第一原理预测及三联三态湮灭速率

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Intramolecular singlet fission and triplet- triplet annihilation (TTA) has been experimentally observed and reported. However, problems remain in theoretically accounting for the corresponding intramolecular electronic couplings and their rates. We used the fragment excitation difference (FED) scheme to calculate the coupling with states from restricted active-space spin-flip configuration interaction.We investigated three covalently linked pentacene dimers via a phenyl group in an ortho-, meta-, and para-arrangement. The singlet fission and TTA couplings were enhanced when two chromophores were covalently linked. With the Fermi golden rule, both the estimated singlet fission and TTA rates were in line with the experimental results. For systems with significant singlet-fission coupling, charge-transfer components were observed in the excited states involved, and charge-transfer states were also seen within 1 eV above the singlet excited states. Our approach allows for an analysis of through-bond versus through-space singlet fission in the full electronic wave functions. The FED scheme is useful for calculating intramolecular singlet-fission and TTA couplings.
机译:经过实验观察和报道了分子内单次裂变和三重态 - 三重胶质湮灭(TTA)。但是,在理论上留意对应的分子内电子耦合及其速率存在问题。我们使用了片段激发差(FED)方案来计算与受限的有源空间旋转配置相互作用的耦合。我们通过邻 - ,荟萃和β-布置中的苯基研究了三个共价连接的五烯二聚体。当两种发色团共价连接时,突出裂变和TTA偶联。通过Fermi黄金法则,估计的单线裂缝和TTA率都符合实验结果。对于具有显着单次裂变耦合的系统,在涉及的激发态中观察到电荷转移组分,并且在单线兴奋状态之上的1eV中也可以看到电荷转移状态。我们的方法允许分析全电子波函数中的通孔与空间单次裂变。美联储方案可用于计算分子内单次裂变和TTA联轴器。

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