首页> 外文期刊>Journal of nanoscience and nanotechnology >Luminance Efficiency Enhancement in Green Organic Light-Emitting Devices Fabricated Utilizing a Cesium Fluoride/Fullerene Heterostructure Electron injection Layer
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Luminance Efficiency Enhancement in Green Organic Light-Emitting Devices Fabricated Utilizing a Cesium Fluoride/Fullerene Heterostructure Electron injection Layer

机译:利用氟化铯/富勒烯异质结构电子注入层制造的绿色有机发光器件的发光效率增强

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摘要

Enhancement mechanisms of the luminance efficiency in green organic light-emitting devices (OLEDs) fabricated utilizing a cesium fluoride (CsF)/fullerene (C_(60)) heterostructure acting as an electron injection layer (EIL) were investigated. The luminance efficiencies as functions of the current density showed that the luminance efficiency in the green OLEDs fabricated utilizing a CsF/C_(60) heterostructure acting as an EIL was higher than that in the green OLEDs fabricated utilizing a CsF, a Liq, or a C_(60) single EIL. The interfacial dipole existing at the CsF layer decreased the electron injection barrier, and the stability of the OLEDs with a CsF EIL was enhanced due to the lower diffusion rate of Cs atoms in comparison with Li atoms. The enhancement of the luminance efficiency of the OLEDs with a heterostructure EIL was attributed to the increase in the electron injection. These results can help improve understanding of the enhancement mechanisms of the luminance efficiency in green OLEDs utilizing a CsF/C_(60) heterostructure acting as an EIL.
机译:研究了利用氟化铯(CsF)/富勒烯(C_(60))异质结构作为电子注入层(EIL)制成的绿色有机发光器件(OLED)的亮度效率增强机制。亮度效率与电流密度的关系表明,使用CsF / C_(60)异质结构作为EIL的绿色OLED的发光效率要高于使用CsF,Liq或a C_(60)单EIL。 CsF层上存在的界面偶极子降低了电子注入势垒,并且由于Cs原子的扩散速率比Li原子低,因此具有CsF EIL的OLED的稳定性得到增强。具有异质结构EIL的OLED的发光效率的提高归因于电子注入的增加。这些结果可以帮助提高对利用CsF / C_(60)异质结构作为EIL的绿色OLED的亮度效率增强机制的理解。

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