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Employment of gold-coated silver nanowires as transparent conductive electrode for organic light emitting diodes

机译:金涂覆的银纳米线作为有机发光二极管的透明导电电极

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摘要

This study proposes a simple method of Au coating on silver nanowires (Ag NWs) transparent conductive films as the anode of organic light emitting diodes (OLED) to increase the work function of the film and thus enhance hole transport. We carefully engineer the process conditions (pretreatment, solution concentrations, and coating number) of the coating using a diluted HAuCl4 solution on the Ag NWs film to minimize etching damage on Ag NWs accompanying the galvanic replacement reaction. Ultraviolet photoelectron spectroscopy and Kelvin probe force microscopy show work function increase of Ag NWs upon Au coating. OLED devices based on Au-coated Ag NWs show a lower turn-on voltage and higher luminance, compared with pristine Ag NWs device. Although the Ag NWs device displays poor efficiencies in the low luminance range due to a high leakage, some of the Au-coated Ag NWs devices showed efficiencies higher than those of the ITO device in a high luminance.
机译:本研究提出了一种简单的Au涂层在银纳米线(AgNWS)透明导电膜上的一种简单方法,作为有机发光二极管(OLED)的阳极,以增加膜的功函数,从而增强空穴传输。 我们在Ag NWS膜上使用稀释的HAUCL4溶液仔细地设计涂料的工艺条件(预处理,溶液浓度和涂覆数),以最小化伴随电丹型置换反应的Ag NWS上的蚀刻损伤。 紫外线光电子体光谱和开菜探针力学显微镜显示Ag NWS在Au涂层上的功函数增加。 与原始Ag NWS器件相比,基于Au涂覆的AG NW的OLED器件显示出较低的导通电压和更高的亮度。 尽管AG NWS器件由于高泄漏而在低亮度范围内显示出较差的效率,但是一些AU涂覆的AG NWS器件显示出高于ITO器件的效率在高亮度中。

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