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首页> 外文期刊>Applied Surface Science >Plasmons excited in a large dense silver nanoparticle layer enhance the luminescence intensity of organic light emitting diodes
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Plasmons excited in a large dense silver nanoparticle layer enhance the luminescence intensity of organic light emitting diodes

机译:在大的致密银纳米颗粒层中激发的等离激元提高了有机发光二极管的发光强度

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摘要

We observe that a layer of large (similar to 300 nm in diameter) closely packed (similar to 15 nm interparticle separation) silver nanoparticles separated by a spacer layer at least 50-nm thick from a 30-nm-thick Alq3 layer results in the enhancement of bulk luminescence efficiency in the Alq3 layer. To study the potential for practical application of this long-range luminescence enhancement, an organic light-emitting diode (OLED) was fabricated with the silver nanoparticle layer serving as the enhancement element. This device exhibits a luminescence efficiency 4.5 times stronger than that of a similar device with no silver nanoparticle layer. If such an enhancement is applied to deep-blue emissive materials, the efficiency should reach the levels required for practical use. This combination could lead to the broad use of OLEDs in displays and lighting. (C) 2015 Elsevier B.V. All rights reserved.
机译:我们观察到,一层大的(类似于直径300 nm)紧密堆积(类似于15 nm颗粒间分离)的银纳米颗粒层与厚度为30 nm的Alq3层间隔至少50 nm的间隔层隔开,导致增强Alq3层中的体发光效率。为了研究这种长距离发光增强的实际应用潜力,制造了一种有机发光二极管(OLED),其以银纳米颗粒层作为增强元素。该器件的发光效率是没有银纳米颗粒层的类似器件的发光效率的4.5倍。如果将这种增强应用于深蓝色发光材料,则效率应达到实际使用所需的水平。这种结合可能导致OLED在显示器和照明中的广泛使用。 (C)2015 Elsevier B.V.保留所有权利。

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