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基于三价铕配合物通过修饰多主体体系组成的高效溶液处理有机发光二极管。

High-efficiency solution-processed OLED based on trivalent europium complex by modifying the composition of the multiple-host system.

作者信息

Li Xiaofang, Yin Jiaxuan, Wang Jingyu, Wu Ruixia, Li Shuaibing, Sun Weidong, Zhou Liang

机构信息

State Key Laboratory of Rare Earth Resource Utilization, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, China.

School of Applied Chemistry and Engineering, University of Science and Technology of China, Hefei, China.

出版信息

Front Chem. 2022 Sep 14;10:965927. doi: 10.3389/fchem.2022.965927. eCollection 2022.

Abstract

In this work, di-[4-(N,N-ditolylamino)-phenyl]cyclohexane (TAPC); 4,4',4″-tri (9-carbazoyl)triphenylamine (TcTa); 9-(4-tert-butylphenyl)-3,6-bis(triphenylsilyl)-9H-carbazole (CzSi); and 1,3,5-tri (m-pyrid-3-yl-phenyl)benzene (TmPyPB) were used to constitute the multiple-host system and fabricate solution-processed organic light-emitting diodes (s-OLEDs) with europium complex Eu(DBM)Phen (DBM, 1,3-diphenylpropane-1,3-dione; Phen,1,10-phenanthroline) as emitter. In order to determine the optimal composition of the multiple-host system, a series of devices with different light-emitting layers (EMLs) were fabricated and compared. Experimental results revealed that removing TmPyPB out of the multiple-host system greatly reduces the turn-on voltage, whereas the addition of TcTa to the multiple-host system helps facilitate the transfer of holes from TAPC to Eu(DBM)Phen molecules, thus increasing the recombination probability of carriers on emitter molecules. Finally, high performance solution-processed red OLED (turn-on voltage of 3.8 V) based on the europium complex doped multiple-host system obtained the maximum current efficiency of 2.07 cd A, power efficiency of 1.54 lm W, external quantum efficiency of 1.2%, and brightness of 945 cd m.

摘要

在本工作中,二-[4-(N,N-二对甲苯基氨基)-苯基]环己烷(TAPC);4,4',4″-三(9-咔唑基)三苯胺(TcTa);9-(4-叔丁基苯基)-3,6-双(三苯基硅基)-9H-咔唑(CzSi);以及1,3,5-三(间吡啶-3-基苯基)苯(TmPyPB)被用于构建多主体体系,并制备以铕配合物Eu(DBM)Phen(DBM,1,3-二苯基丙烷-1,3-二酮;Phen,1,10-菲咯啉)作为发光体的溶液处理有机发光二极管(s-OLED)。为了确定多主体体系的最佳组成,制备并比较了一系列具有不同发光层(EML)的器件。实验结果表明,从多主体体系中去除TmPyPB会大大降低开启电压,而向多主体体系中添加TcTa有助于促进空穴从TAPC转移到Eu(DBM)Phen分子,从而增加发光体分子上载流子的复合概率。最终,基于铕配合物掺杂多主体体系的高性能溶液处理红色OLED(开启电压为3.8 V)获得了2.07 cd/A的最大电流效率、1.54 lm/W的功率效率、1.2%的外量子效率以及945 cd/m²的亮度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae8d/9515504/61407d7e7689/fchem-10-965927-g001.jpg

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