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Lensfree OLEDs with over 50 external quantum efficiency via external scattering and horizontally oriented emitters

机译:通过外部散射和水平取向的发射器具有超过50%的外部量子效率的无透镜OLED

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摘要

High efficiency is important for successful deployment of any light sources. Continued efforts have recently made it possible to demonstrate organic light-emitting diodes with efficiency comparable to that of inorganic light-emitting diodes. However, such achievements were possible only with the help of a macroscopic lens or complex internal nanostructures, both of which undermine the key benefits of organic light-emitting diodes as an affordable planar light source. Here we present a systematic way to achieve organic light-emitting diodes with ultrahigh efficiency even only with an external scattering film, one of the simplest low-cost outcoupling structures. Through a global, multivariable analysis, we show that scattering with a high degree of forwardness has a potential to play a critical role in realizing ultimate efficiency. Combined with horizontally oriented emitters, organic light-emitting diodes equipped with particle-embedded films tailored for forward-intensive scattering achieve a maximum external quantum efficiency of 56%.
机译:高效对于成功部署任何光源都很重要。近来的不断努力使得有可能展示具有与无机发光二极管相当的效率的有机发光二极管。但是,只有借助宏观透镜或复杂的内部纳米结构,才能取得这样的成就,而这两者都破坏了有机发光二极管作为可负担的平面光源的关键优势。在这里,我们提出了一种系统的方法,即使仅使用外部散射膜(一种最简单的低成本外耦合结构之一)也可以实现超高效率的有机发光二极管。通过全局的多变量分析,我们表明,高度向前的散射可能在实现最终效率中发挥关键作用。结合水平定向的发射器,配备有专为正向密集散射而设计的粒子嵌入膜的有机发光二极管可实现56%的最大外部量子效率。

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