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An ultra-thin gold nanoparticle layer modified cathode for the enhanced performance of polymer light emitting diodes

机译:用于增强聚合物发光二极管性能的超薄金纳米粒子层改性阴极

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The enhanced performance of polymer light emitting diodes has been by embedding an ultrathin gold nanoparticle layer on the cathode. The performance of devices could be optimized simply by adjusting the thickness of gold, which exhibited the improved brightness from 17k cd m(-2) to 20k cd m(-2) and the enhanced luminous efficiency from 15.4 cd A(-1) to 18.3 cd A(-1), when a greenish emissive polymer P-PPV was applied as an emissive layer. The experimental results show that it is mainly attributed to the decreased holes and the increased electrons, resulting in the balanced electron-hole recombination and the shifted light emitting profile to the anode. The results demonstrate that gold nanoparticles constitute a feasible and effective route for achieving high-performance polymer optoelectronic devices through their electric properties.
机译:通过在阴极上嵌入超薄金纳米颗粒层,提高了聚合物发光二极管的性能。只需调整金的厚度即可优化器件的性能,金的显示亮度从17k cd m(-2)提高到20k cd m(-2),发光效率从15.4 cd A(-1)提高到当将绿色发光聚合物P-PPV用作发光层时,为18.3 cd A(-1)。实验结果表明,这主要归因于空穴的减少和电子的增加,从而导致了平衡的电子-空穴复合以及向阳极转移的发光轮廓。结果表明,金纳米颗粒通过其电性能构成了实现高性能聚合物光电器件的可行和有效途径。

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