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首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Spectroscopic study of spin-dependent exciton formation rates in π-conjugated semiconductors: Comparison with electroluminescence techniques
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Spectroscopic study of spin-dependent exciton formation rates in π-conjugated semiconductors: Comparison with electroluminescence techniques

机译:π共轭半导体中自旋相关激子形成速率的光谱研究:与电致发光技术的比较

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摘要

It has been found in recent measurements that the singlet-to-triplet exciton ratio in organic light-emitting diodes (OLEDs) is larger than expected from spin degeneracy, and that singlet excitons form at a larger rate than triplets. We employed the technique of optically detected magnetic resonance to measure the spin-dependent exciton formation rates in films of a polymer and corresponding monomer, and explore the relation between the formation rates and the actual singlet-to-triplet ratio measured previously in OLEDs. We found that the spin-dependent exciton formation rates can indeed quantitatively explain the observed exciton yields, and that singlet formation rates and yields are significantly enhanced only in polymer OLEDs, but not in OLEDs made from the corresponding monomer.
机译:在最近的测量中已经发现,有机发光二极管(OLED)中的单重态与三重态激子之比大于自旋简并所预期的,并且单重态激子以比三重态更大的速率形成。我们采用光学检测磁共振技术来测量聚合物和相应单体薄膜中自旋相关的激子形成速率,并探索形成速率与先前在OLED中测得的实际单线态与三重态之比之间的关系。我们发现自旋依赖性激子形成速率确实可以定量解释观察到的激子产率,并且单线态形成速率和产率仅在聚合物OLED中显着提高,而在由相应单体制成的OLED中却没有显着提高。

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