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Device Reflectivity as a Simple Rule for Predicting the Suitability of Scattering Foils for Improved OLED Light Extraction

机译:器件反射率作为预测散射箔的适用性,以改善OLED光提取的简单规则

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A general challenge in Organic Light Emitting Diodes (OLEDs) is to extract the light efficiently from waveguided modes within the device structure. This can be accomplished by applying an additional scattering layer to the substrate which results in outcoupling increases between 0% to <100% in external quantum efficiency. In this work, we aim to address this large variation and show that the reflectivity of the OLED is a simple and useful predictor of the efficiency of substrate scattering techniques without the need for detailed modeling. We show that by optimizing the cathode and anode structure of glass based OLEDs by using silver and an ITO free high conductive Agfa Orgacon? PEDOT:PSS we are able to increase the external quantum efficiency of OLEDs with the same outcoupling substrates from 2.4% to 5.6%, an increase of 130%. In addition, Holst Centre and partners are developing flexible substrates with integrated light extraction features and roll to roll compatible processing techniques to enable this next step in OLED development both for lighting and display applications. These devices show promise as they are shatterproof substrates and facilitate low cost manufacture.
机译:有机发光二极管(OLED)中的一般挑战是从装置结构内的波导模式中有效地提取光。这可以通过将额外的散射层施加到基板上来实现,这导致外耦合在外部量子效率下的0%至<100%之间的增加。在这项工作中,我们的目标是解决这种大的变化,并表明OLED的反射率是衬底散射技术效率的简单而有用的预测因素,而无需详细建模。我们通过使用银和ITO自由高导电Agfa agacon优化基于玻璃OLED的阴极和阳极结构来表明。 PEDOT:PSS我们能够提高OLED的外部量子效率,其外耦合底物从2.4%达5.6%,同比增加130%。此外,HOLST中心和合作伙伴正在开发具有集成光提取功能的柔性基板,滚动兼容的加工技术,以便在OLED开发中进行照明和显示应用。这些器件显示出承诺,因为它们是破碎的基板,便于低成本制造。

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