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Directional and ultrafast migrations of excitons/biexcitons in organic polymers by utilizing a local nonuniform electric field

机译:利用局部非均匀电场,有机聚合物中激子/ Biexcitons的方向和超快迁移

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摘要

In organic devices, migration dynamics of different excited states (e.g., excitons and biexcitons) are of vital importance to their functional processes. Here, by utilizing a local nonuniform electric field to organic polymers, a new strategy to manipulate the directional and ultrafast migrations of both excitons and biexcitons has been theoretically reported. In particular, it is found that the direction of migration of biexcitons is opposite to that of excitons. The underlying mechanism is attributed to the reverse polarized behavior of excitons and biexcitons, on which reverse driving forces are separately created to act. Furthermore, to confirm and apply these theoretical findings, an experimental scheme is devised, aiming at luminescence modulation by manipulating the ultrafast redistribution of preformed excitons or biexcitons in an organic luminescent layer. The ranges of response time and visual resolution for the luminescence modulation have also been discussed.
机译:在有机装置中,不同激发态的迁移动态(例如,激子和Biexcitons)对其功能过程至关重要。 这里,理论上报道了通过利用局部非均匀电场对有机聚合物进行有机聚合物的新策略,以便操纵激子和比Xcitons的定向和超快迁移。 特别地,发现Biexcitons的迁移方向与激子的迁移方向相反。 底层机制归因于激子和Biexcitons的反向极化行为,其上是分别创建的反向驱动力以采用。 此外,为了确认和应用这些理论发现,设计了一种实验方案,旨在通过操纵预成型的激子或在有机发光层中的Biexcitons的超速再分布来调节发光调节。 还讨论了发光调制的响应时间和视觉分辨率的范围。

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