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用于溶液处理热激活延迟荧光有机发光二极管的新型V形双极主体材料。

Novel V-Shaped Bipolar Host Materials for Solution-Processed Thermally Activated Delayed Fluorescence OLEDs.

作者信息

Lee Dong Won, Hwang Jinhyo, Kim Hyung Jong, Lee Hyoseong, Ha Jung Min, Woo Han Young, Park Sungnam, Cho Min Ju, Choi Dong Hoon

机构信息

Department of Chemistry, Research Institute for Natural Science, Korea University, 145 Anam-ro, Seongbuk-gu, Seoul 02841, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2021 Oct 20;13(41):49076-49084. doi: 10.1021/acsami.1c14098. Epub 2021 Oct 11.

Abstract

Three V-shaped host molecules with a cyclohexane linker were successfully synthesized for thermally activated delayed fluorescence organic light-emitting diodes (TADF-OLEDs). The unipolar host molecules, BBCzC and BTDC, contained two 9-phenyl-9-3,9'-bicarbazole (PBCz) moieties and two 2,12-di--butyl-7-phenyl-5,9-dioxa-13-boranaphtho[3,2,1-]anthracene (PDBNA) moieties, respectively. BCzTC, a bipolar host molecule, consisted of a donor unit, PBCz, and an acceptor unit, PDBNA, connected by a cyclohexane linker. Three host molecules showed good solubility in various organic solvents, making them suitable for solution processing. Among the solution-processed green TADF-OLEDs using three host molecules and a green TADF emitter, the one with BCzTC showed the highest external quantum efficiency of up to 30% with a high power efficiency of 71 lm W and a current efficiency of 102 cd A. Compared with BBCzC and BTDC, BCzTC exhibited a relatively high photoluminescence quantum yield (PLQY), an excellent balance in hole and electron transport properties in the emitting layer, and more efficient energy transfer to the emitter, giving such an excellent device performance.

摘要

成功合成了三种带有环己烷连接基的V形主体分子,用于热激活延迟荧光有机发光二极管(TADF-OLED)。单极主体分子BBCzC和BTDC分别包含两个9-苯基-9-3,9'-联咔唑(PBCz)部分和两个2,12-二-丁基-7-苯基-5,9-二氧杂-13-硼萘并[3,2,1-]蒽(PDBNA)部分。双极主体分子BCzTC由一个供体单元PBCz和一个受体单元PDBNA通过环己烷连接基连接而成。三种主体分子在各种有机溶剂中均表现出良好的溶解性,使其适用于溶液加工。在使用这三种主体分子和一种绿色TADF发射体的溶液加工绿色TADF-OLED中,采用BCzTC的器件显示出高达30%的最高外量子效率,高功率效率为71 lm/W,电流效率为102 cd/A。与BBCzC和BTDC相比,BCzTC表现出相对较高的光致发光量子产率(PLQY),在发射层的空穴和电子传输特性方面具有出色的平衡,并且向发射体的能量转移更有效,从而赋予了如此优异的器件性能。

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