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Luminous power efficiency optimization of a white organic light-emitting diode by tuning its spectrum and its extraction efficiency

机译:通过调整其光谱和提取效率来优化白色有机发光二极管的光功率效率

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We show an increase of the luminous power efficiency of a white organic light-emitting diode (LED) with three emitters by optimizing its spectrum and its extraction efficiency To calculate this efficiency we use a model with four parameters: the spectra, extraction efficiencies, internal quantum efficiencies of three emittors, and the driving voltage. This luminous power efficiency increases by 30% by use of a spectrum close to the spectrum of the MacAdam limit. This limit gives the highest luminous efficacy for a given chromaticity. We also show that a white organic LED with an inefficient deep blue emitter can give the same luminous power efficiency as a white organic LED with a more efficient light blue emitter, because of their different fractions in the radiant flux. Tuning the extraction efficiency with a microcavity to the spectrum also increases the luminous power efficiency by 10%. (c) 2008 Optical Society of America.
机译:通过优化其光谱和提取效率,我们展示了具有三个发射器的白色有机发光二极管(LED)的发光效率的提高。要计算此效率,我们使用具有四个参数的模型:光谱,提取效率,内部三个发射器的量子效率以及驱动电压。通过使用接近MacAdam极限光谱的光谱,这种发光功率效率提高了30%。对于给定的色度,此限制给出了最高的发光效率。我们还显示,具有低效深蓝色发射器的白色有机LED可以提供与具有更高效的浅蓝色发射器的白色有机LED相同的发光功率效率,因为它们的辐射通量比例不同。通过微腔将提取效率调整到频谱,也可以将发光效率提高10%。 (c)2008年美国眼镜学会。

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