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Photoemission spectroscopy study on interfacial energy level alignments in tandem organic light-emitting diodes

机译:串联有机发光二极管界面能级排列的光发射光谱研究

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Organic light-emitting diodes (OLEDs) using a tandem structure offer a highly attractive option for the applications of next-generation flat panel displays and solid-state lighting due to the extremely high brightness and efficiency along with the long operational lifetime. In general, reliable information about interface energetics of the charge generation layers (CGLs), which plays the central role in charge generation and carrier injection into the stacked emission units, is highly desirable and advantageous for interface engineering and the performance optimization of tandem OLEDs. In this review, our recent studies on tandem OLEDs are overviewed, especially from interface energetics perspective via photo-emission spectroscopy. The electronic structures of various transition metal oxide (TMO)-based CGLs and their role in charge generation process are reviewed, addressing the n-type doping impact of organic layers in CGLs, thermal annealing-induced oxygen vacancy in TMOs, and the interfacial stability of CGLs on the device operational lifetime. The resulting energy level alignments are summarized in correspondence with tandem OLED performance. (C) 2015 Elsevier B.V. All rights reserved.
机译:采用串联结构的有机发光二极管(OLED)由于具有极高的亮度和效率以及较长的使用寿命,因此为下一代平板显示器和固态照明的应用提供了极具吸引力的选择。通常,非常需要关于电荷产生层(CGL)的界面能学的可靠信息,这些信息在电荷产生和将载流子注入堆叠的发射单元中起着核心作用,对于界面工程和串联OLED的性能优化非常有利。在这篇综述中,我们对串联式OLED的最新研究进行了概述,尤其是从界面能学角度通过光发射光谱学。综述了各种基于过渡金属氧化物(TMO)的CGL的电子结构及其在电荷产生过程中的作用,解决了有机层在CGL中的n型掺杂影响,热退火引起的TMO中氧空位以及界面稳定性的问题。 CGL对设备工作寿命的影响。总结了与串联OLED性能相对应的能级比对。 (C)2015 Elsevier B.V.保留所有权利。

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