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首页> 外文期刊>Nanoscale >Intaglio-type random silver networks as the cathodes for efficient full-solution processed flexible quantum-dot light-emitting diodes
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Intaglio-type random silver networks as the cathodes for efficient full-solution processed flexible quantum-dot light-emitting diodes

机译:Intaglio-type随机银网络阴极有效完整解决方案处理灵活的量子点发光二极管

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Flexible quantum-dot light-emitting diodes (FQLEDs) hold great promise as a leading display and lighting technology due to their light weight, low-cost, and saturated emission color. However, there remain many challenges in the development of high quality electrodes on flexible substrates for device fabrication and operation. In this work, we present a robust flexible transparent conductive film with embedded random Ag networks in the PET substrate (named PRAN). The PRAN composite film exhibits an average transmittance of 85, and the sheet resistance reaches near 5.3 sq(-1) without any obvious change after bending 3000 times, indicating excellent flexibility of this type of conductive film. A highly conductive poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS) layer was employed to smooth the surface of the PRAN electrode. Consequently, FQLEDs based on these flexible electrodes are successfully fabricated and the peak power efficiencies of 42.3, 101.9, and 6.4 lm W-1 are achieved for the red, green and blue devices, respectively. To the best of our knowledge, these are the best efficiencies for the FQLEDs reported to date. These results lay the foundation of the realization of ITO-free, high-efficiency FQLEDs for use in flexible lighting and display applications.
机译:灵活的量子点发光二极管(FQLEDs)作为主要展示蕴含着巨大的希望由于他们的光和照明技术体重、低成本和排放饱和的颜色。然而,仍然存在许多挑战开发高质量的电极灵活的设备制造和基质操作。柔性透明导电薄膜嵌入随机Ag)网络宠物衬底(名为普朗)。平均透光率为85%,单附近的阻力达到5.3平方(1)没有任何明显的变化后弯曲3000次,说明这种类型的优秀的灵活性导电薄膜。

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