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首页> 外文期刊>Advanced Functional Materials >Chain-Length Dependence of Singlet and Triplet Exciton Formation Rates in Organic Light-Emitting Diodes
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Chain-Length Dependence of Singlet and Triplet Exciton Formation Rates in Organic Light-Emitting Diodes

机译:有机发光二极管中单重态和三重态激子形成速率的链长依赖性

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摘要

The operation and efficiencies of molecular or polymer organic light-emitting diodes depend on the nature of the excited species that are formed. The lowest singlet and triplet excitons display different characteristics that impact on the quantum yields achievable in the devices. Here, by performing correlated quantum-chemical calculations that account for both the electronic couplings and energetics of the charge-recombination process from a pair of positive and negative polarons into singlet and triplet excitons, we show that the formation rates for singlet over triplet excitons vary with chain length and favor singlet excitons in longer chains. Thus, in polymer devices, the resulting singlet/triplet fraction can significantly exceed the spin-statistical limit.
机译:分子或聚合物有机发光二极管的操作和效率取决于所形成的受激物质的性质。最低的单重态和三重态激子显示出不同的特性,这些特性会影响器件中可达到的量子产率。在这里,通过执行相关的量子化学计算,说明从一对正负极化子到单重态和三重态激子的电荷复合过程的电子耦合和高能,我们证明了单重态与三重态激子的形成速率不同具有链长,并倾向于较长链中的单重态激子。因此,在聚合物装置中,所得的单线态/三重态分数可大大超过自旋统计极限。

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