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Microscopic theory of singlet exciton fission. III. Crystalline pentacene

机译:单重态激子裂变的微观理论。三,结晶并五苯

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We extend our previous work on singlet exciton fission in isolated dimers to the case of crystalline materials, focusing on pentacene as a canonical and concrete example. We discuss the proper interpretation of the character of low-lying excited states of relevance to singlet fission. In particular, we consider a variety of metrics for measuring charge-transfer character, conclusively demonstrating significant charge-transfer character in the low-lying excited states. The impact of this electronic structure on the subsequent singlet fission dynamics is assessed by performing real-time master-equation calculations involving hundreds of quantum states. We make direct comparisons with experimental absorption spectra and singlet fission rates, finding good quantitative agreement in both cases, and we discuss the mechanistic distinctions that exist between small isolated aggregates and bulk systems.
机译:我们将以前在孤立二聚体中的单重态激子裂变的工作扩展到晶体材料的情况,重点是并五苯作为典范和具体示例。我们讨论与单线态裂变有关的低激发态的特征的正确解释。特别地,我们考虑了多种用于测量电荷转移特性的指标,最终证明了在低激发态下的显着电荷转移特性。通过执行涉及数百个量子态的实时主方程计算,可以评估这种电子结构对随后的单峰裂变动力学的影响。我们与实验吸收光谱和单峰裂变速率进行直接比较,在两种情况下均找到了良好的定量一致性,并且我们讨论了小的孤立聚集体与本体系统之间存在的机械区别。

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