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Diffusion Length and Langevin Recombination of Singlet and Triplet Excitons in Organic Heterojunction Solar Cells

机译:单重态和三重态激子在有机异质结太阳能电池中的扩散长度和兰文重组。

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摘要

We derived new expressions for the diffusion length of singlet and triplet excitons by using the Foster and Dexter transfer mechanisms, respectively, and have found that the diffusion lengths of singlet and triplet excitons are comparable. By using the Langevin recombination theory, we derived the rate of recombination of dissociated free charges into their excitonic states. We found that in some organic polymers the probabilities of recombination of free charge carriers back into the singlet and triplet states are approximately 65.6 and 34.4%, respectively, indicating that Langevin-type recombination into triplet excitons in organic semiconductors is less likely. This implies that the creation of triplet excitons may be advantageous in organic solar cells, because this may lead to dissociated free charge carriers that can be collected at their respective electrodes, which should result in better conversion efficiency.
机译:我们分别使用Foster和Dexter转移机制得出了单重态和三重态激子扩散长度的新表达式,并且发现单重态和三重态激子的扩散长度是可比的。通过使用Langevin重组理论,我们得出了离解的自由电荷重组为激子态的速率。我们发现,在某些有机聚合物中,自由电荷载流子重新重组为单重态和三重态的概率分别约为65.6%和34.4%,这表明在有机半导体中,朗格文型重组为三重态激子的可能性较小。这意味着三重态激子的产生在有机太阳能电池中可能是有利的,因为这可能导致离解的自由电荷载流子可以收集在它们各自的电极上,这将导致更好的转换效率。

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