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Ultrathin Nondoped Emissive Layers for Efficient and Simple Monochrome and White Organic Light-Emitting Diodes

机译:超薄非掺杂发光层,用于高效,简单的单色和白色有机发光二极管

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摘要

In this paper, highly efficient and simple monochrome blue, green, orange, and red organic light emitting diodes (OLEDs) based on ultrathin nondoped emissive layers (EMLs) have been reported. The ultrathin nondoped EML was constructed by introducing a 0.1 nm thin layer of pure phosphorescent dyes between a hole transporting layer and an electron transporting layer. The maximum external quantum efficiencies (EQEs) reached 17.1%, 20.9%, 17.3%, and 19.2% for blue, green, orange, and red monochrome OLEDs, respectively, indicating the universality of the ultrathin nondoped EML for most phosphorescent dyes. On the basis of this, simple white OLED structures are also demonstrated. The demonstrated complementary blue/orange, three primary blue/green/red, and four color blue/green/orange/red white OLEDs show high efficiency and good white emission, indicating the advantage of ultrathin nondoped EMLs on constructing simple and efficient white OLEDs.
机译:在本文中,已经报道了基于超薄非掺杂发射层(EML)的高效,简单的单色蓝色,绿色,橙色和红色有机发光二极管(OLED)。通过在空穴传输层和电子传输层之间引入0.1 nm的纯磷光染料薄层来构造超薄非掺杂EML。蓝色,绿色,橙色和红色单色OLED的最大外部量子效率(EQE)分别达到了17.1%,20.9%,17.3%和19.2%,这表明超薄非掺杂EML对于大多数磷光染料具有普遍性。在此基础上,还展示了简单的白色OLED结构。演示的互补蓝色/橙色,三种主要的蓝色/绿色/红色和四种颜色的蓝色/绿色/橙色/红色白色OLED显示出高效率和良好的白色发射,表明超薄非掺杂EML在构造简单高效的白色OLED方面的优势。

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