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Microcavity effects on emissive color and electroluminescent performance in organic light-emitting diodes

机译:微腔对有机发光二极管的发射颜色和电致发光性能的影响

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摘要

Microcavity organic light-emitting diodes having a top metal mirror and a bottom dielectric mirror, which was distributed Bragg reflectors (DBR) fabricated by using TiO_2-SiO_2 alternative dielectric multilayer with a central stop-band and two sub-stop-bands, were fabricated. In the devices, the active layers consisted of a hole-transporting layer N,N'-di(naphthalene-l-yl)-N,N'-diphenylbenzidine (NPB) and an electron-transporting/emitting layer tris(8-hydroxy-quinoline) aluminum (Alq_3). The relationship of the electroluminescent (EL) spectrum and efficiency with the thickness of the active layer and metal layer was studied. It was found that the EL emissive color did not strongly depend on the thickness of the organic layer and metal layer, which was attributed to the excellent photon confinement role of the narrow stop-band of the used dielectric mirror. Thus, high efficiency microcavity organic light-emitting diodes were achieved, and the peak wavelength and color purity were not obviously changed, via optimizing the thickness of organic layer and metal electrode.
机译:制备了具有顶部金属镜和底部介电镜的微腔有机发光二极管,该微腔有机发光二极管是通过使用具有中心阻带和两个子阻带的TiO_2-SiO_2交替介电多层制造的分布式布拉格反射器(DBR)。 。在器件中,有源层由空穴传输层N,N'-二(萘-1-基)-N,N'-二苯基联苯胺(NPB)和电子传输/发射层三(8-羟基)组成-喹啉)铝(Alq_3)。研究了电致发光(EL)光谱和效率与有源层和金属层厚度之间的关系。发现EL发射颜色与有机层和金属层的厚度没有很大关系,这归因于所用介电镜的窄阻带的出色的光子限制作用。因此,通过优化有机层和金属电极的厚度,实现了高效的微腔有机发光二极管,并且峰值波长和色纯度没有明显改变。

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