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有机异质结中的极化激元辅助激发能量通道化

Polariton-assisted excitation energy channeling in organic heterojunctions.

作者信息

Wang Mao, Hertzog Manuel, Börjesson Karl

机构信息

Department of Chemistry and Molecular Biology, University of Gothenburg, Gothenburg, Sweden.

出版信息

Nat Commun. 2021 Mar 25;12(1):1874. doi: 10.1038/s41467-021-22183-3.

Abstract

Exciton-polaritons are hybrid light-matter states resulting from strong exciton-photon coupling. The wave function of the polariton is a mixture of light and matter, enabling long-range energy transfer between spatially separated chromophores. Moreover, their delocalized nature, inherited from the photon component, has been predicted to enhance exciton transport. Here, we strongly couple an organic heterojunction consisting of energy/electron donor and acceptor materials to the same cavity mode. Using time-resolved spectroscopy and optoelectrical characterization, we show that the rate of exciton harvesting is enhanced with one order of magnitude and the rate of energy transfer in the system is increased two- to threefold in the strong coupling regime. Our results exemplify two means of efficiently channeling excitation energy to a heterojunction interface, where charge separation can occur. This study opens a new door to increase the overall efficiency of light harvesting systems using the tool of strong light-matter interactions.

摘要

激子极化激元是激子与光子强耦合产生的混合光物质态。极化激元的波函数是光与物质的混合,能够在空间分离的发色团之间进行长程能量转移。此外,它们从光子成分继承而来的离域性质,预计会增强激子传输。在此,我们将由能量/电子供体和受体材料组成的有机异质结与同一腔模进行强耦合。通过时间分辨光谱和光电表征,我们表明在强耦合 regime 中,激子俘获速率提高了一个数量级,系统中的能量转移速率提高了两到三倍。我们的结果例证了将激发能有效引导至异质结界面(电荷分离可能发生的地方)的两种方法。这项研究为利用强光物质相互作用工具提高光收集系统的整体效率打开了一扇新的大门。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dce1/7994571/1caab9deb991/41467_2021_22183_Fig1_HTML.jpg

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