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首页> 外文期刊>Applied optics >Light extraction efficiency of a top-emission organic light-emitting diode with an Yb/Au double-layer cathode and an opaque Si anode
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Light extraction efficiency of a top-emission organic light-emitting diode with an Yb/Au double-layer cathode and an opaque Si anode

机译:具有Yb / Au双层阴极和不透明Si阳极的顶部发光有机发光二极管的光提取效率

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摘要

We have computed the transmittances of four types of cathode--Yb/Au, Al/Au, Yb/Ag, and Al/Ag double layers--and the light extraction efficiencies of the top-emission organic light-emitting diodes with these cathodes, respectively, based on the characteristic matrix method and the dissipation spectrum model. Computations show that the Yb/Au cathode has a markedly higher transmittance than the other three types of cathode when the Yb and Au thicknesses in the Yb/Au cathode are, respectively, equal to the Al (or Yb) and Au (or Ag) thicknesses in the other three types of cathode. The power lost to the Yb/Au cathode due to the surface plasmon polaritons is the lowest, and hence the device with the Yb/Au cathode has the highest extraction efficiency. The transmittances for the four cathodes are also measured experimentally.
机译:我们已经计算了四种类型的阴极的透射率-Yb / Au,Al / Au,Yb / Ag和Al / Ag双层-以及使用这些阴极的顶部发光有机发光二极管的光提取效率分别基于特征矩阵法和耗散谱模型。计算表明,当Yb / Au阴极中的Yb和Au厚度分别等于Al(或Yb)和Au(或Ag)时,Yb / Au阴极的透射率明显高于其他三种阴极。其他三种阴极的厚度。由于表面等离激元极化子而损失给Yb / Au阴极的功率最低,因此具有Yb / Au阴极的器件具有最高的提取效率。还通过实验测量了四个阴极的透射率。

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