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具有相对较厚银电极的新型倒置顶部发射有机发光二极管的增强器件性能。

Enhanced device performances of a new inverted top-emitting OLEDs with relatively thick Ag electrode.

作者信息

Park So-Ra, Suh Min Chul

出版信息

Opt Express. 2018 Feb 19;26(4):4979-4988. doi: 10.1364/OE.26.004979.

Abstract

To improve the device performances of top-emitting organic light emitting diodes (TEOLEDs), we developed a new inverted TEOLEDs structure with silver (Ag) metal as a semi-transparent top electrode. Especially, we found that the use of relatively thick Ag electrode without using any carrier injection layer is beneficial to realize highly efficient device performances. Also, we could insert very thick overlying hole transport layer (HTL) on the emitting layer (EML) which could be very helpful to suppress the surface plasmon polariton (SPP) coupling if it is applied to the common bottom-emission OLEDs (BEOLEDs). As a result, we could realize noteworthy high current efficiency of approximately ~188.1 cd/A in our new inverted TEOLEDs with 25 nm thick Ag electrode.

摘要

为了提高顶部发射有机发光二极管(TEOLED)的器件性能,我们开发了一种以银(Ag)金属作为半透明顶部电极的新型倒置TEOLED结构。特别是,我们发现使用相对较厚的Ag电极且不使用任何载流子注入层有利于实现高效的器件性能。此外,我们可以在发光层(EML)上插入非常厚的上覆空穴传输层(HTL),如果将其应用于常见的底部发射有机发光二极管(BEOLED),这将非常有助于抑制表面等离子体激元(SPP)耦合。结果,在我们具有25 nm厚Ag电极的新型倒置TEOLED中,我们实现了约188.1 cd/A的显著高电流效率。

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