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High-efficiency red organic light-emitting diodes based on a double-emissive layer with an external quantum efficiency over 30%

机译:基于双发射层的高效红色有机发光二极管,外部量子效率超过30%

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摘要

It has been demonstrated that the performance of organic light-emitting diodes (OLEDs) is significantly related to the emissive layer (EML) architecture. In this article, an efficient double-emissive layer (D-EML) structure based on two different hole-transporting materials as hosts, N, N'-diphenyl-N,N'-bis(1-naphthylphenyl)-1,1'-biphenyl-4,4'-diamine (NPB) and 4,4',4 ''-tri(N-carbazolyl) triphenylamine (TCTA), was designed to enhance the exciton utilization. Accordingly, the resulting red OLED shows excellent electroluminescence performance, exhibiting a maximum current efficiency of 49.2 cd A(-1), a maximum power efficiency of 53.5 lm W-1 and a maximum external quantum efficiency (EQE) of 30.3%. At a high brightness of 5000 cd m(-2), they still remained at 42.3 cd A(-1), 21.4 lm W-1 and 25.4%, respectively. Furthermore, its device structure is very simple, with neither a p-type dopant nor an n-type dopant in the charge-transporting layers. It can be seen that the introduction of an efficient D-EML greatly improved the electroluminescence performance of the OLED.
机译:已经证明,有机发光二极管(OLED)的性能与发光层(EML)架构显着相关。在本文中,基于两种不同的空穴传输材料的有效的双发射层(D-EML)结构作为宿主,N,N'-二苯基-N,N'-Bis(1-萘基苯基)-1,1' - 设计 - 苯苯基-4,4'-二胺(NPB)和4,4',4''-TRI(N-咔唑)三苯胺(TCTA),以增强激子利用率。因此,所得的红色OLED显示出优异的电致发光性能,表现出49.2cd A(-1)的最大电流效率,最大功率效率为53.5升W-1,最大外部量子效率(EQE)为30.3%。在5000cd m(-2)的高亮度下,它们仍然分别保持在42.3℃(-1),21.4升W-1和25.4%。此外,其装置结构非常简单,既不是电荷输送层中的p型掺杂剂也不是n型掺杂剂。可以看出,引入高效的D-EML大大提高了OLED的电致发光性能。

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