首页> 外文期刊>Advanced Functional Materials >Red phosphorescent iridium complex containing carbazole-functionalized beta-diketonate for highly efficient nondoped organic light-emitting diodes
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Red phosphorescent iridium complex containing carbazole-functionalized beta-diketonate for highly efficient nondoped organic light-emitting diodes

机译:含咔唑官能化的β-二酮酸酯的红色磷光铱配合物,用于高效非掺杂有机发光二极管

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摘要

A novel red phosphorescent iridium, complex containing a carbazole-functionalized beta-diketonate, Ir(DBQ)(2)(CBDK) (bis(dibenzo[f,h]quinoxalinato-N, C-2) iridium (1-(carbazol-9-yl)-5,5-dimethylhexane-2,4-diketonate)) is designed, synthesized, and characterized. The electrophosphorescence properties of a nondoped device using the title complex as an emitter with a device configuration of indium tin oxide (ITO)/N,N'-diphenyl-N,N'-bis(1-naphthyl)-1,1'-diphenyl-4,4'-diamine (NPB; 20 nm)/iridium complex (20 nm)/2,9-dimethyl-4,7-diphenyl-1,10-phenanthroline (BCP; 5 nm)/tris(8-hydroxyquinoline) (AlO; 30 nm)/ Mg0.9Ag0.1 (200 nm)/Ag (80 nm) are examined. The results show that the nondoped device achieves a maximum lumen efficiency as high as 3.49 lm W-1. To understand this excellent result observed, two reference complexes Ir(DBQ)(2)(acac), where acac is the acetyl acetonate anion, and Ir(DBQ)(2)(FBDK), [bis(dibenzo[f,h]quinoxalinato-N,C-2) iridium (1-(9-methyl-fluoren-9-yl)-6,6-dimethylheptane-3,5-diketonate)], have also been synthesized, and as emitters they were examined under the same device configuration. The maximum lumen efficiency of the former compound is found to be 0.26 lm W-1 while that for the latter is 0.37 lm W-4, suggesting that the excellent performance of Ir(DBQ)(2)(CBDK) can be attributed mainly to an improved hole-transporting property that benefits the exciton transport. In addition, a bulky diketonate group separates the emitter centers from each other, which is also important for organic light-emitting diodes.
机译:一种新型的红色磷光铱配合物,其中包含咔唑官能化的β-二酮(Ir(DBQ)(2)(CBDK)(双(二苯并[f,h] quinoxalinato-N,C-2)铱(1-(咔唑-设计,合成和表征9-基)-5,5-二甲基己烷-2,4-二酮酸酯)。使用标题配合物作为发射体且具有铟锡氧化物(ITO)/ N,N'-二苯基-N,N'-双(1-萘基)-1,1'-的器件配置的非掺杂器件的电致磷光性能二苯基-4,4'-二胺(NPB; 20 nm)/铱络合物(20 nm)/ 2,9-二甲基-4,7-二苯基-1,10-菲咯啉(BCP; 5 nm)/ tris(8-检查了羟基喹啉(AlO; 30 nm)/ Mg0.9Ag0.1(200 nm)/ Ag(80 nm)。结果表明,未掺杂的器件实现了高达3.49 lm W-1的最大流明效率。为了解观察到的优异结果,使用了两种参考配合物Ir(DBQ)(2)(acac),其中acac是乙酰丙酮酸根阴离子,Ir(DBQ)(2)(FBDK),[bis(dibenzo [f,h]还合成了喹喔啉基-N,C-2)铱(1-(9-甲基-氟-9-基)-6,6-二甲基庚烷-3,5-二酮酸酯),并作为发射体对其进行了研究。相同的设备配置。发现前一种化合物的最大流明效率为0.26 lm W-1,而后者的最大流明效率为0.37 lm W-4,这表明Ir(DBQ)(2)(CBDK)的优异性能主要归因于有利于激子传输的改进的空穴传输性质。另外,庞大的二酮酸酯基使发射器中心彼此分开,这对于有机发光二极管也很重要。

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