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利用具有扩展线性供体-受体-供体结构的绿色热激活延迟荧光发射体,有机发光二极管的外量子效率接近40% 。

Approaching Nearly 40% External Quantum Efficiency in Organic Light Emitting Diodes Utilizing a Green Thermally Activated Delayed Fluorescence Emitter with an Extended Linear Donor-Acceptor-Donor Structure.

作者信息

Chen Yang, Zhang Dongdong, Zhang Yuewei, Zeng Xuan, Huang Tianyu, Liu Ziyang, Li Guomeng, Duan Lian

机构信息

Key Lab of Organic Optoelectronics and Molecular Engineering of Ministry of Education, Department of Chemistry, Tsinghua University, Beijing, 100084, P. R. China.

Center for Flexible Electronics Technology, Tsinghua University, Beijing, 100084, P. R. China.

出版信息

Adv Mater. 2021 Nov;33(44):e2103293. doi: 10.1002/adma.202103293. Epub 2021 Sep 13.

Abstract

Thermally activated delayed fluorescence (TADF) emitters featuring preferential horizontal emitting dipole orientation (EDO) are in urgent demand for enhanced optical outcoupling efficiency in organic light-emitting diodes (OLEDs). However, simultaneously manipulating EDO and optoelectronic properties remains a formidable challenge. Here, an extended linear D-A-D structure with both enlarged donor (D) and acceptor (A) π-systems is established, not only elaborately manipulating parallel horizontal molecular orientation and EDO along its long axis by multi-driving-forces for a high horizontal dipole ratio (Θ ), but also delocalizing distribution of frontier energy levels for optimized electronic properties. The proof-of-the-concept emitter simultaneously affords a high Θ of 92%, a high photoluminescence quantum yield of 95%, and a fast reverse intersystem crossing rate of 1.16 × 10 s . The corresponding OLED achieves a champion maximum external quantum efficiency of 39.1% among all green TADF devices without any external light-extraction techniques, together with a maximum power efficiency of 112.0 lm W and alleviated efficiency roll-off. These findings may inspire even better full-color TADF emitters that push the device efficiency toward the theoretical limits.

摘要

为提高有机发光二极管(OLED)的光外耦合效率,迫切需要具有优先水平发射偶极子取向(EDO)的热激活延迟荧光(TADF)发光体。然而,同时控制EDO和光电特性仍然是一项艰巨的挑战。在此,建立了一种扩展的线性D-A-D结构,其供体(D)和受体(A)的π体系均得到扩大,不仅通过多驱动力精心控制沿其长轴的平行水平分子取向和EDO,以实现高的水平偶极子比率(Θ),而且使前沿能级的分布离域化以优化电子特性。该概念验证发光体同时具有92%的高Θ、95%的高光致发光量子产率以及1.16×10 s的快速反向系间窜越速率。在所有绿色TADF器件中,相应的OLED在没有任何外部光提取技术的情况下实现了39.1%的最佳最大外量子效率,以及112.0 lm W的最大功率效率,并减轻了效率滚降。这些发现可能会激发更好的全色TADF发光体,将器件效率推向理论极限。

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