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Highly Efficient Single-Layer Phosphorescent Organic Light-Emitting Diodes Based on Co-Host Structure

机译:基于共主体结构的高效单层磷光有机发光二极管

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摘要

High-efficiency single-layer organic light-emitting diodes (OLEDs) based on a simple structure doped with iridium(III) bis(4-phenylthieno[3,2-c]pyridinato-N,C2′) acetylacetonate (PO-01) as emission dyes are realized, achieving maximum current efficiency (CE) and power efficiency (PE) of 37.1 cd A and 33.3 lm W as well as low turn-on voltage of 3.31 V. Such superior performance is mainly attributed to the employment of a uniform co-host structure and assisted charge transport property of phosphors dyes, which were in favor of the balance of charge carrier injection and transport in the single emitting layer (EML). Moreover, systematic researches on the position of exciton recombination region and the dopant effect on charge carriers were subsequently performed to better understand the operational mechanism. It could be experimentally found that the orange emitting dopants promoted the acceleration of the charge carriers transport and raised the exciton recombination efficiency, eventually leading to an excellent performance of single-layer OLEDs.
机译:基于掺杂有铱(III)双(4-苯基噻吩并[3,2-c]吡啶并-N,C2')乙酰丙酮化物(PO-01)的简单结构的高效单层有机发光二极管(OLED)当实现发射染料时,可实现37.1 cd A和33.3 lm W的最大电流效率(CE)和功率效率(PE),以及3.31 V的低启动电压。这种出色的性能主要归功于采用了磷光体染料具有均匀的共主体结构和辅助的电荷传输特性,有利于平衡电荷载流子在单发射层(EML)中的注入和传输。此外,随后对激子复合区的位置和对载流子的掺杂效应进行了系统的研究,以更好地了解其作用机理。可以通过实验发现,发射橙色的掺杂剂促进了电荷载流子传输的加速并提高了激子复合效率,最终导致了单层OLED的优异性能。

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