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Engineering Charge Injection Interfaces in Hybrid Light-Emitting Electrochemical Cells

机译:混合发光电化学电池中的工程电荷注入接口

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Light-emitting electrochemical cells (LECs) consists of a thin film of an ionic organic semiconductor sandwiched between two electrodes. Because of the large density of ions, LECs are often reported to perform independently on the electrodes work function. Here we use metal oxides as charge injection layers and demonstrate that, although electroluminescence is observed independently of the electrodes used, the device performances are strongly dependent on the choice of the interface materials. Relying on metal oxide charge injection layers, such hybrid devices are of interest for real lighting applications and could pave the way for new efficient, stable, low-cost lighting sources.
机译:发光电化学电池(LEC)由夹在两个电极之间的离子有机半导体薄膜组成。由于离子密度大,因此经常报道LEC在电极功函数上独立执行。在这里,我们将金属氧化物用作电荷注入层,并证明尽管观察到电致发光与所用电极无关,但器件性能在很大程度上取决于界面材料的选择。依靠金属氧化物电荷注入层,这样的混合设备对于实际的照明应用很感兴趣,并且可以为新型高效,稳定,低成本的照明方式铺平道路。

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