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Improved polymer light-emitting diodes by the tuning of charge balance

机译:通过调整电荷平衡来改进聚合物发光二极管

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We have prepared polymer-small molecule hybrid electroluminescence devices with improved brightness and efficiency by a doping method. The doping effect on the hole transporter N,N'-diphenyl-N,N'-bis(4'-[N,N-bis(naphth-1-yl)-amino]-biphenyl-4-yl)-benzidine has been investigated in bilayer devices with structure of ITO/MEH-PPV: TPTE/PBD/Al. It was found that the effective hole mobility increases with increasing TPTE content in the blend, which is directly determined by space charge limited current at high voltage. The brightness and EL efficiencies of the doped OLEDs were increased significantly over those obtained for devices based only on MEH-PPV, which is attributed to more balanced electron and hole recombination due to improved hole mobility.
机译:我们已经通过掺杂方法制备了具有改善的亮度和效率的聚合物-小分子混合电致发光器件。对空穴传输剂N,N'-二苯基-N,N'-双(4'-[N,N-双(萘-1-基)-氨基]-联苯-4-基)-联苯胺的掺杂作用具有在具有ITO / MEH-PPV结构的双层器件中研究了TPTE / PBD / Al。发现有效空穴迁移率随共混物中TPTE含量的增加而增加,这直接由高压下的空间电荷限制电流决定。与仅基于MEH-PPV的器件相比,掺杂OLED的亮度和EL效率显着提高,这归因于由于空穴迁移率提高而实现的电子和空穴复合更加平衡。

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