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The effect of anisotropy on light extraction of organic light-emitting diodes with photonic crystal structure

机译:各向异性对具有光子晶体结构的有机发光二极管的光提取的影响

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The light extraction efficiency of organic light-emitting diodes (OLED) is greatly limited due to the difference in refractive indexes between materials of OLED. We fabricated OLED with photonic crystal microstructures in the interface between the glass substrate and the ITO anode. The light extraction efficiency can be improved by utilizing photonic crystals; however, the anisotropy effect of light extraction was clearly observed in experiment. To optimize the device performance, the effect of photonic crystal on both light extraction and angular distribution was investigated using finite-difference time domain (FDTD) method. We simulated the photonic crystals with the structure of square lattice and triangle lattice. We analyzed the improvement of these structures in the light extraction efficiency of the OLED and the influence of arrangement, depth, period, and diameter on anisotropy. The optimized geometric parameters were provided, which will provide the theoretical support for designing the high performance OLED.
机译:由于OLED材料之间的折射率差异,极大地限制了有机发光二极管(OLED)的光提取效率。我们在玻璃基板和ITO阳极之间的界面中制造了具有光子晶体微结构的OLED。利用光子晶体可以提高光提取效率。然而,在实验中清楚地观察到了光提取的各向异性效应。为了优化器件性能,使用有限差分时域(FDTD)方法研究了光子晶体对光提取和角度分布的影响。我们用正方形晶格和三角形晶格的结构模拟了光子晶体。我们分析了这些结构在OLED的光提取效率方面的改进以及排列,深度,周期和直径对各向异性的影响。提供了优化的几何参数,这将为设计高性能OLED提供理论支持。

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