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非相干光照下的光化学动力学:自组装分子J聚集体中的光捕获

Photochemical dynamics under incoherent illumination: Light harvesting in self-assembled molecular J-aggregates.

作者信息

Morales-Curiel Luis Felipe, León-Montiel Roberto de J

机构信息

Instituto de Ciencias Nucleares, Universidad Nacional Autónoma de México, Apartado Postal 70-543, 04510 Ciudad de México, Mexico.

出版信息

J Chem Phys. 2020 Feb 21;152(7):074304. doi: 10.1063/1.5130572.

Abstract

Transport phenomena in organic, self-assembled molecular J-aggregates have long attracted a great deal of attention due to their potential role in designing novel organic photovoltaic devices. A large number of theoretical and experimental studies have been carried out describing excitonic energy transfer in J-aggregates under the assumption that excitons are induced by a coherent laser-light source or initialized by a localized excitation on a particular chromophore. However, these assumptions may not provide an accurate description to assess the efficiency of J-aggregates, particularly as building blocks of organic solar cells. Under natural conditions, J-aggregates would be subjected to an incoherent source of light (as is sunlight), which would illuminate the whole photosynthetic complex rather than a single molecule. In this work, we present the first study of the efficiency of photosynthetic energy transport in self-assembled molecular aggregates under incoherent sunlight illumination. By making use of a minimalistic model of a cyanine dye J-aggregate, we demonstrate that long-range transport efficiency is enhanced when exciting the aggregate with incoherent light. Our results thus support the conclusion that J-aggregates are, indeed, excellent candidates for devices where efficient long-range incoherently induced exciton transport is desired, such as in highly efficient organic solar cells.

摘要

由于有机自组装分子J聚集体在设计新型有机光伏器件中可能发挥的作用,其输运现象长期以来一直备受关注。在激子由相干激光光源诱导或由特定发色团上的局域激发初始化的假设下,已经进行了大量的理论和实验研究来描述J聚集体中的激子能量转移。然而,这些假设可能无法准确描述J聚集体的效率,特别是作为有机太阳能电池的构建块时。在自然条件下,J聚集体会受到非相干光源(如阳光)的照射,该光源会照亮整个光合复合体而非单个分子。在这项工作中,我们首次研究了在非相干阳光照射下自组装分子聚集体中的光合能量传输效率。通过使用一种花青染料J聚集体的简约模型,我们证明当用非相干光激发聚集体时,长程传输效率会提高。因此,我们的结果支持这样的结论,即J聚集体确实是那些需要高效长程非相干诱导激子传输的器件的优秀候选者,比如在高效有机太阳能电池中。

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