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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Exciton energy transfer in organic light emitting diodes with thermally activated delayed fluorescence dopants
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Exciton energy transfer in organic light emitting diodes with thermally activated delayed fluorescence dopants

机译:具有热活化延迟荧光掺杂剂的有机发光二极管中的激子能量转移

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摘要

Molecular systems exhibiting thermally activated delayed fluorescence (TADF) are widely used as fluorescent dopants in organic light-emitting diodes (OLEDs) due to their capacity to harvest triplet excitons. The optoelectronic properties of a TADF-based OLED can be further improved by co-depositing a highly luminescent fluorophore into the emissive layer. In a double-dopant architecture, electrically generated excitons on the TADF molecules are transmitted to the fluorescent emitter for radiative recombination. In this theoretical study, we investigate the ability of singlet excitons on PXZ-TRZ to non-radiatively hop to Rubrene by varying the ambient temperature and solvent polarity. The non-zero probability of the exciton energy transfer is attributed to the vibronic interaction between the charge-transfer (CT) and optically bright high-lying states of the TADF monomer. We systematically extend the outcome of our calculations to a similar class of dimers and discuss how the preferential orientation of linear shaped TADF molecules and their complementary fluorophores can enhance the efficiency of energy transfer.
机译:具有热活化延迟荧光(TADF)的分子系统由于其收获三重态激子的容量而广泛用作有机发光二极管(OLED)中的荧光掺杂剂。通过将高亮度荧光团共沉积到发光层中,可以进一步改善TADF基OLED的光电性质。在双掺杂剂架构中,TADF分子上的电生成的激子被传递到荧光发射器以进行辐射重组。在这个理论研究中,我们通过改变环境温度和溶剂极性来研究单态激子对PXZ-TRZ对杂液的能力。激子能量转移的非零概率归因于TADF单体的电荷转移(CT)和光学亮高躺线之间的颤音相互作用。我们系统地将我们的计算结果扩展到类似类别的二聚体,并讨论线性形状的TADF分子的优先取向如何提高能量转移的效率。

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