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通过优化主体极性提高热激活延迟荧光发光二极管的性能。

Enhanced performance of thermally activated delayed fluorescent light emitting diodes by optimized host polarity.

作者信息

Sun Yingying, Xu Zijie, Wang Yongqiang, Niu Ziying, Xu Zhenjiang, Li Shuhong, Wang Wenjun, Liu Yunlong

出版信息

Opt Express. 2024 May 6;32(10):17942-17952. doi: 10.1364/OE.522090.

Abstract

The interaction between the intrinsic polarity of the host material and the TADF guest material affects charge injection and transport, exciton formation, charge recombination, and emission mechanisms. Therefore, understanding and controlling the interaction between the intrinsic polarity of the host material and the TADF guest material is very important to realize efficient TADF-OLED devices. This study investigated the molecular interaction between different polar host materials and a thermally activated delayed fluorescence material (DMAc-PPM). It has been found that interaction between the host and guest (π-π stacking interaction, multiple CH/π contacts) greatly influence the molecular transition dipole moment orientation of the guest. And the OLED devices based on the strong polar host (DPEPO) exhibited the highest EQE and lowest luminescence intensity, while devices using the weaker polar hosts mCP and CBP achieved higher luminance and lower EQE. Then, the strong polar host DPEPO was mixed with the weaker polar hosts CBP and mCP, respectively. The devices prepared based on the mixed-host DPEPO: mCP showed a 2.2 times improvement in EQE from 6.3% to 20.1% compared to the single-host mCP. The devices prepared based on the mixed-host DPEPO: CBP showed a 3.1 times improvement in luminance intensity from 1023 cd/m to 4236 cd/m compared to the single host of DPEPO. This suggests that optimizing the polarity of host materials has the potential to enhance the performance of solution prepared OLED devices.

摘要

主体材料的固有极性与热激活延迟荧光(TADF)客体材料之间的相互作用会影响电荷注入与传输、激子形成、电荷复合及发光机制。因此,理解并控制主体材料的固有极性与TADF客体材料之间的相互作用对于实现高效的TADF有机发光二极管(OLED)器件至关重要。本研究调查了不同极性主体材料与一种热激活延迟荧光材料(DMAc-PPM)之间的分子相互作用。研究发现,主体与客体之间的相互作用(π-π堆积相互作用、多个CH/π接触)极大地影响了客体的分子跃迁偶极矩取向。基于强极性主体(DPEPO)的OLED器件表现出最高的外量子效率(EQE)和最低的发光强度,而使用较弱极性主体mCP和CBP的器件则实现了更高的亮度和更低的EQE。然后,将强极性主体DPEPO分别与较弱极性主体CBP和mCP混合。与单主体mCP相比,基于混合主体DPEPO:mCP制备的器件EQE从6.3%提高到20.1%,提高了2.2倍。与单主体DPEPO相比,基于混合主体DPEPO:CBP制备的器件发光强度从1023 cd/m提高到4236 cd/m,提高了3.1倍。这表明优化主体材料的极性具有提高溶液法制备的OLED器件性能的潜力。

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