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Efficient hybrid organic-inorganic light emitting diodes with self-assembled dipole molecule deposited metal oxides

机译:具有自组装偶极子分子沉积金属氧化物的高效混合有机-无机发光二极管

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摘要

We investigate the effect of self-assembled dipole molecules (SADMs) on ZnO surface in hybrid organic-inorganic polymeric light-emitting diodes (HyPLEDs). Despite the SADM being extremely thin, the magnitude and orientation of SADM dipole moment effectively influenced the work function of the ZnO. As a consequence, the charge injection barrier between the conduction band of the ZnO and the lowest unoccupied molecular orbital of poly(9,9(')-dioctylfluorene)-co-benzothiadiazole could be efficiently controlled resulting that electron injection efficiency is remarkably enhanced. The HyPLEDs modified with a negative dipolar SADM exhibited enhanced device performances, which correspond to approximately a fourfold compared to those of unmodified HyPLEDs.
机译:我们研究自组装偶极子分子(SADMs)在混合有机-无机聚合物发光二极管(HyPLEDs)中的ZnO表面的影响。尽管SADM非常薄,但SADM偶极矩的大小和方向有效地影响了ZnO的功函数。结果,可以有效地控制ZnO的导带和聚(9,9(')-二辛基芴)-共-苯并噻二唑的最低未占据分子轨道之间的电荷注入势垒,从而显着提高了电子注入效率。用负极性偶极SADM改性的HyPLED表现出增强的器件性能,与未改性的HyPLED相比,其性能约高四倍。

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