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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Thermally activated delayed fluorescence emitters with dual conformations for white organic light-emitting diodes: mechanism and molecular design
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Thermally activated delayed fluorescence emitters with dual conformations for white organic light-emitting diodes: mechanism and molecular design

机译:具有双构象的热活化延迟荧光发射器,用于白色有机发光二极管:机制和分子设计

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摘要

Thermally activated delayed fluorescence (TADF) molecules with dual emission have great potential for use as single emitters in white organic light-emitting diodes (WOLEDs). In this paper, the light-emitting mechanisms of PTZ-TTR and PTZ-Ph-TTR with blue-orange dual emission are studied systematically. The near-planar and near-orthogonal conformations are responsible for the blue and orange emission, respectively. For PTZ-TTR, the near-orthogonal conformation is only generated by the transformation from the near-planar conformation, while the near-orthogonal conformation of PTZ-Ph-TTR can be generated by both excitation and transformation. This results in relatively strong orange emission in PTZ-Ph-TTR. In addition, the TADF mechanism is investigated, and two up-conversion pathways are revealed for both molecules. Based on the comparison of the photophysical properties of PTZ-TTR in toluene and the aggregation state, we find that aggregation could induce a smaller energy gap between the first singlet excited state and the first triplet excited state. Besides, the substitution effect of donors on light-emitting properties is studied, and the design rules for emitters with dual conformations and compensatory emission are proposed. Our theoretical results would favor the understanding of the light-emitting mechanism as well as the design of new-type TADF emitters for WOLEDs.
机译:具有双发射的热活化延迟荧光(TADF)分子具有很大的潜力,其用作白色有机发光二极管(Woled)中的单个发射器。本文通过系统地研究了PTZ-TTR和PTZ-PH-TTR的发光机制,并系统地研究了蓝橙色双重发射。近平面和近正交构象分别对蓝色和橙色发射负责。对于PTZ-TTR,近乎正交的构象仅由近平面构象的变换产生,而PTZ-PH-TTR的近乎正交构象可以通过激励和转换产生。这导致PTZ-PH-TTR中相对强的橙色发射。此外,研究了TADF机制,并针对两个分子揭示了两个上转化途径。基于甲苯和聚集状态的PTZ-TTR的光物理性质的比较,我们发现聚集可以诱导第一单态激发状态和第一三重态激发态之间的较小能隙。此外,研究了供体对发光性能的替代作用,提出了具有双构象和补偿排放的发射器的设计规则。我们的理论结果将有利于了解发光机制以及用于Woled的新型TADF发射器的设计。

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