Efficient near-infrared organic radical-based light-emitting diodes

Hwan-Hee Cho, Shun Kimura, N. Greenham, Tetsuro Kusamoto, Richard C. Friend, E. W. Evans
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Abstract

Despite extensive research on near-infrared organic light-emitting diodes (OLEDs), the external quantum efficiency (EQE) of these devices are far lower than devices with visible light emission. Recently, doublet fluorescent emission from organic radicals has emerged as a new route to more efficient light-emitting devices than those using established non-radical organic emitters. Charge recombination in radical devices results in doublet excitons with nanosecond emission and avoids the efficiency limit usually associated with singlets and triplets. For the application of the organic radicals to near-infrared electroluminescence, the novel near-infrared radical emitter showing around 800 nm emission was designed. Using the organic radical, not only higher than 5% EQE was attained but also the efficiency roll-off and operational lifetime were substantially improved in addition to decreasing turn-on and driving voltage significantly.
高效的近红外有机基发光二极管
尽管近红外有机发光二极管(oled)的研究非常广泛,但其外量子效率(EQE)远低于可见光器件。近年来,有机自由基的双重荧光发射已成为一种新的途径,比那些使用已建立的非自由基有机发射体更有效的发光器件。自由基器件中的电荷重组产生了具有纳秒发射的双重态激子,避免了通常与单重态和三重态有关的效率限制。为了将有机自由基应用于近红外电致发光,设计了一种新型的800 nm左右发射的近红外自由基发射器。使用有机自由基,不仅获得了高于5%的EQE,而且大大提高了效率滚转和工作寿命,并显着降低了导通和驱动电压。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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