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Polymer light-emitting diodes with inorganic nanocomposite interlayers for efficiency enhancement

机译:具有无机纳米复合夹层的聚合物发光二极管,用于效率增强

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We report on polymer light-emitting diodes (PLEDs) with embedded SiO_2 nanoparticle interlayers. We fabricated PLEDs with a rather thick (180 nm) SiO_2 interlayer between the hole injection layer and a 50-nm thin emission layer. We also made devices, where the interlayer was embedded inside the emission layer. The devices were characterized by electroluminescence and photoluminescence measurements and compared to the respective reference devices. We achieved an enhancement factor of 1.74 for the luminous efficacy and 2.13 for the current efficiency at 4000 cd/m~2 for the PLED with the interlayer between the hole injection layer and the emission layer compared to the reference device. For PLEDs with the interlayer between the two emission layers, we obtained an enhancement factor of 1.68 for the luminous efficacy and 1.45 for the current efficiency at 4000 cd/m~2 compared to the corresponding reference device. This surprising enhancement can be explained by a superposition of increased internal quantum efficiency and an increase in the extraction efficiency.
机译:我们向聚合物发光二极管(Pleds)报告具有嵌入式SiO_2纳米颗粒中间层。我们在空穴注入层和50nm薄的发光层之间用相当厚的(180nm)的SiO_2中间层制造镀层。我们还制造了设备,其中层间嵌入了发光层内。该装置的特征在于电致发光和光致发光测量,并与各个参考装置相比。对于光学效率,我们实现了1.74的增强因子,并且2.13在与参考装置相比,在空穴注入层和发光层之间的间层之间的电流效率为4000cd / m〜2。对于在两个发光层之间的中间层之间的镀层,我们在与相应的参考装置相比,在4000cd / m〜2的电流效率下获得1.68的增强因子。这种令人惊讶的增强可以通过增加内部量子效率的叠加和提取效率的增加来解释。

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