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- W4286005619 abstract "Efficient exciton transport is crucial to the application of organic semiconductors (OSCs) in light-harvesting devices. While the physics of exciton transport in highly disordered media is well-explored, the description of transport in structurally and energetically ordered OSCs is less established, despite such materials being favorable for devices. In this Perspective we describe and highlight recent research pointing toward a highly efficient exciton transport mechanism which occurs in ordered OSCs, transient delocalization. Here, exciton-phonon couplings play a critical role in allowing localized exciton states to temporarily access higher-energy delocalized states whereupon they move large distances. The mechanism shows great promise for facilitating long-range exciton transport and may allow for improved device efficiencies and new device architectures. However, many fundamental questions on transient delocalization remain to be answered. These questions and suggested next steps are summarized." @default.
- W4286005619 created "2022-07-21" @default.
- W4286005619 creator A5022092509 @default.
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- W4286005619 date "2022-07-20" @default.
- W4286005619 modified "2023-10-02" @default.
- W4286005619 title "A New Frontier in Exciton Transport: Transient Delocalization" @default.
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- W4286005619 doi "https://doi.org/10.1021/acs.jpclett.2c01133" @default.
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