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Device performance enhancement in polymer light-emitting diodes by introducing titanium oxide layer

机译:通过引入氧化钛层的聚合物发光二极管中的装置性能增强

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One of the serious problems in polymer light-emitting diodes (PLEDs) is the difficulty of electron injection in the current PLEDs device of anode/polymer/cathode geometry. This is particularly true for the case of aluminum (Al) electrode. The work function of Al is too high to match with the Lowest Unoccupied Molecular Orbit (LUMO) level of the luminescent polymers, thereby lowering the device efficiency. In this work, by introducing solution-based titanium oxide (TiO_x) thin film as an electron injection layer between the polymer and Al electrode, we demonstrate that the devices exhibit an enhanced efficiency. The TiO_x layer reduces the barrier height between the polymer and aluminum (Al) cathode, thereby facilitating the electron injection in the devices.
机译:聚合物发光二极管(PLEDS)中的一个严重问题是电子注入在电流镀锌装置的阳极/聚合物/阴极几何形状中的难度。对于铝(Al)电极的情况尤其如此。 Al的功函数太高,不能与发光聚合物的最低未占用的分子轨道(LumO)水平相匹配,从而降低了器件效率。在这项工作中,通过将基于溶液的氧化钛(TiO_x)薄膜引入聚合物和Al电极之间的电子注入层,我们证明了器件具有增强的效率。 TiO_x层降低了聚合物和铝(Al)阴极之间的阻挡高度,从而促进了器件中的电子注入。

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