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Triplet energy transfer and triplet exciton recycling in singlet fission sensitized organic heterojunctions

机译:单次裂变中的三联能能量转移和三联激子回收敏化有机异质结

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Singlet exciton fission is a process where an excited singlet state splits into two triplets, thus leading to generation of multiple excitons per absorbed photon in organic semiconductors. Herein, we report a detailed exciton management approach for multiexciton harvesting over a broadband region of the solar spectrum in singlet fission sensitized organic photodiodes. Through systematic studies on the model cascade of pentacene/rubrene/C_(60), we found that efficient photocurrent generation from pentacene can still occur despite the presence of a > 10nm thick interlayer of rubrene in between the pentacene/C_(60) heterojunction. Our results show that thin rubrene interlayers of thickness < 5 nm are effective in maintaining the delicate balance between two free charge generation channels that progress independently via the electron and hole transfer routes. The contribution to photocurrent from pentacene despite having a reasonably thick rubrene interlayer, that too with higher triplet energy (T1=1.12 eV) than pentacene (T1= 0.86 eV), makes its operation a rather interesting result. We discuss the role of rubrene interlayer film discontinuity, triplet exciton reflection from rubrene interlayer and triplet energy transfer from rubrene to pentacene layer followed by diffusion of triplet excitons through rubrene as plausible mechanisms that would enable triplet excitons from pentacene to generate significant photocurrent in a multilayer organic heterojunction.
机译:单线态激子裂变是一个过程,其中一个激发单重态被分为两个三重峰,从而导致生成每吸收的光子的多个激子在有机半导体中的。在此,我们报告multiexciton收获详细激子管理方法相比在单裂变太阳光谱的宽带区域敏化有机光电二极管。通过对并五苯/红荧烯/ C_(60)的模型级联系统的研究,我们发现,从并五苯是有效的光电流产生仍可尽管红荧烯的> 10纳米厚的中间层的并五苯/ C_(60)异质结的存在发生。我们的研究结果表明,厚度的薄红荧烯夹层<5nm的是有效地维持经由电子和空穴传输的路由独立地进步两个自由电荷产生通道之间的微妙平衡。光电流从并五苯,尽管有相当厚的红荧烯中间层,即得具有较高的三重态能量(T1 = 1.12 eV)的比并五苯(T1 = 0.86电子伏特),使得其操作颇为有趣的结果的贡献。我们讨论红荧烯的层间膜的不连续的作用,三重态激子从红荧烯层间和从红荧烯三线态能量传递到并五苯层,然后三重态激子的扩散通过红荧烯作为合理的机制,以使三重态激子从并五苯中的多层,以产生显著光电流反射有机异质结。

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