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Improved electron injection from silver electrode for all solution-processed polymer light-emitting diodes with Cs_2CO_3:conjugated polyelectrolyte blended interfacial layer

机译:对于所有具有Cs_2CO_3:共轭聚电解质共混界面层的溶液处理的聚合物发光二极管,改进了从银电极的电子注入

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摘要

This study demonstrates the incorporation of a Cs_2CO_3:conjugated polyelectrolyte blended interfacial layer between the emissive layer and a silver (Ag) cathode, for realizing all-solution processed polymer light-emitting diodes. For a device with poly(9,9-dioctylflu-orene-co-benzothiadiazole) (F8BT) as the emissive layer, this approach improves the maximum luminance of approximately 80,000 cd/m~2 and maximum current efficiency of 10.6 cd/A. It is clarified that the interfacial layer prevents Ag nanoparticles from penetrating into the emissive layer, resulting in yellow-green emission from F8BT. We also demonstrate the possibility of all-solution processed polymer light-emitting diodes utilizing solution-processed Cs_2CO_3:conjugated polyelectrolyte interfacial layer and Ag nano-ink.
机译:这项研究表明在发射层和银(Ag)阴极之间掺入Cs_2CO_3:共轭聚电解质混合界面层,以实现全溶液处理的聚合物发光二极管。对于以聚(9,9-二辛基氟-芳烃-苯并噻二唑)(F8BT)作为发光层的器件,此方法可将最大亮度提高大约80,000 cd / m〜2,将最大电流效率提高到10.6 cd / A。明确了,界面层防止了Ag纳米颗粒渗透到发射层中,导致F8BT产生黄绿色发射。我们还演示了利用溶液处理的Cs_2CO_3:共轭聚电解质界面层和Ag纳米墨水对溶液进行全溶液处理的聚合物发光二极管的可能性。

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