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并五苯中温度无关的单线态激子裂分。

Temperature-independent singlet exciton fission in tetracene.

出版信息

J Am Chem Soc. 2013 Nov 6;135(44):16680-8. doi: 10.1021/ja408854u.

Abstract

We use transient absorption spectroscopy to demonstrate that the dynamics of singlet exciton fission in tetracene are independent of temperature (10–270 K). Low-intensity, broad-band measurements allow the identification of spectral features while minimizing bimolecular recombination. Hence, by directly observing both species, we find that the time constant for the conversion of singlets to triplet pairs is ~90 ps. However, in contrast to pentacene, where fission is effectively unidirectional, we confirm that the emissive singlet in tetracene is readily regenerated from spin-correlated "geminate" triplets following fission, leading to equilibrium dynamics. Although free triplets are efficiently generated at room temperature, the interplay of superradiance and frustrated triplet diffusion contributes to a nearly 20-fold increase in the steady-state fluorescence as the sample is cooled. Together, these results require that singlets and triplet pairs in tetracene are effectively degenerate in energy, and begin to reconcile the temperature dependence of many macroscopic observables with a fission process which does not require thermal activation.

摘要

我们使用瞬态吸收光谱来证明,在蒽中,单线态激子裂变的动力学与温度无关(10-270 K)。低强度、宽频带测量可以在最小化双分子复合的情况下识别光谱特征。因此,通过直接观察两种物质,我们发现将单线态转化为三重态对的时间常数约为 90 ps。然而,与五苯不同的是,在五苯中,裂变基本上是单向的,我们确认在裂变后,从相关的“孪生”三重态中,蒽中的发射单线态很容易重新生成,从而导致平衡动力学。尽管在室温下可以有效地产生游离三重态,但超辐射和受挫三重态扩散的相互作用导致稳态荧光增加近 20 倍,因为样品被冷却。这些结果共同表明,蒽中的单线态和三重态对在能量上是有效简并的,并开始将许多宏观观测的温度依赖性与不需要热激活的裂变过程协调起来。

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