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Efficient Trilayer Phosphorescent Organic Light-Emitting Devices Without Electrode Modification Layer and Its Working Mechanism

机译:高效无电极修饰层的三层磷光有机发光器件及其工作机理

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摘要

At present, numerous functional layers are introduced to improve the carrier injection and balance the carrier transport in organic light-emitting devices (OLEDs). Although it may be a good way to enhance the efficiency of devices, the introduction of functional layers would also result in extra process and long manufacture period. Actually, with the enrichment of material system, many appropriate materials could be chosen to share two or even more functions in OLEDs. Here, via impedance spectroscopy and transient electroluminescence analysis, di-[4-(N,N-ditolyl-amino)-phenyl] cyclohexane (TAPC) and 4,7-diphenyl-1,10-phenanthroline (Bphen) are demonstrated to serve as carrier injection and transport layers simultaneously. As a result, efficient trilayer OLEDs are achieved with comparable performances to conventional multilayer devices. Further studies have also been carried out to analyze the recombination and quenching mechanisms in devices. TAPC can block electrons effectively, while Bphen avoids the accumulation of holes. It makes carriers in emitting layer become more balanced, resulting in the reduction of efficiency roll-off.
机译:当前,引入了许多功能层以改善载流子注入并平衡有机发光器件(OLED)中的载流子传输。尽管这可能是提高设备效率的好方法,但是引入功能层也将导致额外的过程和较长的制造时间。实际上,随着材料系统的丰富,可以选择许多合适的材料来共享OLED中的两个甚至更多功能。在这里,通过阻抗光谱和瞬态电致发光分析,证明了二[4-(N,N-二甲苯甲酰基-氨基)-苯基]环己烷(TAPC)和4,7-二苯基-1,10-菲咯啉(Bphen)起作用同时作为载流子注入和传输层。结果,获得了具有与常规多层器件相当的性能的有效的三层OLED。还进行了进一步的研究以分析装置中的重组和淬灭机理。 TAPC可以有效地阻挡电子,而Bphen可以避免空穴的积累。它使发射层中的载流子变得更加平衡,从而降低了效率下降。

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