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Exciton-Exciton Annihilation as a Probe of Exciton Diffusion in Large Porphyrin Nanorings

机译:Exciton-Exciton湮灭作为大卟啉纳米的激子扩散探头

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摘要

The photophysical behavior of natural and artificial cyclic supramolecular structures has been intensively investigated in the past decade. Among the artificial structures, large fully pi-conjugated porphyrin nanorings are of particular interest because of their electronic, structural, and topological features, which make them suitable candidates for light-harvesting applications. A number of factors affect the efficiency with which such structures harvest and transmit energy. For instance, under intense irradiation conditions, the efficiency of light harvesting can be quenched by competing processes, such as exciton-exciton annihilation. Here, we investigate the pump fluence dependence of the transient absorption spectra of a series of porphyrin nanorings ranging in circumference between 13 and 52 nm (10-40 porphyrin units). This allowed the isolation of a fluence-dependent fast-decaying component in all but the smallest nanorings studied. This effect has been assigned to exciton-exciton annihilation and fit to a one-dimensional exciton diffusion model, which confirms that the exciton size and/or its mobility are inversely proportional to the nanoring size.
机译:在过去十年中,自然和人工循环超分子结构的光物理行为已经密集地研究。在人造结构中,由于其电子,结构和拓扑特征,大型全Pi缀合的卟啉纳米特别感兴趣,这使得它们适用于用于光收集应用的候选者。许多因素影响了这种结构收获和传递能量的效率。例如,在激烈的照射条件下,可以通过竞争的过程来淬火光收获的效率,例如激子激子湮灭。在这里,我们研究了一系列卟啉纳米的瞬态吸收光谱的泵能依赖性在13至52nm之间的圆周(10-40个卟啉单位)之间。这允许在所有所研究的最小纳米中隔离流量依赖性的快速腐烂组件。这种效果已被分配给Exciton-Exciton湮灭并配合到一维激子扩散模型,其证实激子尺寸和/或其迁移率与纳米尺寸成反比。

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