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三重态分离在并五苯中飞秒关联三重态对产生后驱动单重态裂变。

Triplet Separation Drives Singlet Fission after Femtosecond Correlated Triplet Pair Production in Rubrene.

机构信息

Department of Chemistry, New York University , 100 Washington Square East, New York, New York 10003, United States.

Department of Chemistry, Columbia University , 3000 Broadway, New York, New York 10027, United States.

出版信息

J Am Chem Soc. 2017 Aug 30;139(34):11745-11751. doi: 10.1021/jacs.7b02621. Epub 2017 Aug 17.

Abstract

Singlet fission, a multistep molecular process in which one photon generates two triplet excitons, holds great technological promise. Here, by applying a combination of transient transmittance and two-dimensional electronic spectroscopy with 5 fs laser pulses, we resolve the full set of fission steps before the onset of spin dephasing. In addition to its role as a viable singlet fission material, single-crystalline rubrene is selected because its energetics and transition dipole alignment uniquely allow for the unambiguous identification of the various fission steps through their contributions to distinct spectroscopic features. The measurements reveal that the neighboring correlated triplet pair achieves its maximum population within 20 fs. Subsequent growth of the triplet signal on picosecond time scales is attributable to spatial separation of the triplets, proceeding nonadiabatically through weakly coupled but near-resonant states. As such, we provide evidence in crystalline rubrene for a singlet fission step that, until now, has not been convincingly observed.

摘要

单重态裂变是一个多步骤的分子过程,其中一个光子产生两个三重态激子,具有巨大的技术前景。在这里,通过应用瞬态透射和二维电子光谱与 5fs 激光脉冲的组合,我们在自旋去相位之前解决了全部裂变步骤。除了作为一种可行的单重态裂变材料之外,单晶苝还被选中,因为其能量学和跃迁偶极子排列独特地允许通过它们对不同光谱特征的贡献来明确识别各种裂变步骤。测量结果表明,相邻的相关三重态对在 20fs 内达到其最大种群。随后,在皮秒时间尺度上的三重态信号的增长归因于三重态的空间分离,通过弱耦合但近共振态非绝热进行。因此,我们在晶体苝中提供了一个单重态裂变步骤的证据,到目前为止,这个步骤还没有被令人信服地观察到。

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