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采用选择性微透镜阵列从有机发光二极管照明的辅助电极中提取低雾度光。

Low-haze light extraction from organic light-emitting diode lighting with auxiliary electrode by selective microlens arrays.

出版信息

Opt Lett. 2013 Oct 15;38(20):4182-5. doi: 10.1364/OL.38.004182.

Abstract

Improved out-coupling efficiency and low haze of organic light-emitting diode (OLED) lighting with an auxiliary electrode are demonstrated by selective microlens arrays (SMLAs). The microlens arrays, aligned with the auxiliary electrode, were selectively fabricated, since the fully packed microlens arrays lead to OLED lighting with high haze. The external quantum efficiency and power efficiency of the devices with the SMLAs increased by 32% when compared with the devices without these arrays. Using the SMLAs, dark grid lines in the emission region became brighter, with a low haze, and the spectra of the emitted light had no shift.

摘要

通过使用辅助电极的选择性微透镜阵列(SMLA),展示了具有更高外耦合效率和更低雾度的有机发光二极管(OLED)照明。由于完全填充的微透镜阵列会导致 OLED 照明具有较高的雾度,因此与辅助电极对齐的微透镜阵列被选择性地制造。与没有这些阵列的器件相比,具有 SMLA 的器件的外量子效率和功率效率提高了 32%。使用 SMLA,发射区域中的暗网格线变得更亮,雾度更低,并且发射光的光谱没有偏移。

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