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首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >Does interchain stacking morphology contribute to the singlet-triplet interconversion dynamics in polymer heterojunctions?
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Does interchain stacking morphology contribute to the singlet-triplet interconversion dynamics in polymer heterojunctions?

机译:链间堆积形态是否有助于聚合物异质结中的单重态-三重态互变动力学?

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摘要

Time-dependent density functional theory (TD-DFT) is used to examine the effect of stacking in a model semiconducting polymer hetrojunction system consisting of two co-facially stacked oligomers. We find that the excited electronic states are highly sensitive to the alignment of the monomer units of the two chains. In the system we examined, the exchange energy is nearly identical to both the and band off-set at the heterojunction and to the exciton binding energy. Our results indicate that the triplet excitonic states are nearly degenerate with the singlet exciplex states opening the possibility for the interconversion of singlet and triplet electronic states at the heterojunction interface via spin-orbit coupling localized on the heteroatoms. Using Russell-Saunders theory, we estimate this interconversion rate to be approximately 700-800 ps, roughly a 5-10-fold increase compared to isolated organic polymer chains.
机译:随时间变化的密度泛函理论(TD-DFT)用于检查在由两个共面堆叠的低聚物组成的模型半导体聚合物异质结系统中的堆叠效应。我们发现,激发的电子态对两条链的单体单元的排列高度敏感。在我们研究的系统中,交换能量几乎与异质结处的,带偏移和激子结合能相同。我们的结果表明,三重态激子态几乎是简并的,而单重态激子态则通过异质原子上的自旋轨道耦合为异质结界面处的单重态和三重态电子态的相互转化提供了可能性。使用Russell-Saunders理论,我们估计此互转换速率约为700-800 ps,与孤立的有机聚合物链相比,大约增加了5-10倍。

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