首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >The Relation between the Electrical,Chemical,and Morphological Properties of Indium-Tin Oxide Layers and Double-Layer Light-Emitting Diode Performance
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The Relation between the Electrical,Chemical,and Morphological Properties of Indium-Tin Oxide Layers and Double-Layer Light-Emitting Diode Performance

机译:氧化铟锡层的电学,化学和形态学性质与双层发光二极管性能之间的关系

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The relation between the electrical,chemical,and morphological properties of indium-tin oxide (ITO) thin films and organic light-emitting diode (OLED) performance is studied.We report on chemical (HC1,piranha solutions),thermal (vacuum annealing),physical (oxygen plasma,UV ozone),and combined treatments on ITO layers.The effects of these different treatments have been studied using the four-point probe resistivity measurement method,contact angle measurement,X-ray diffraction,surface profilometry,and UV-vis-IR transmittance.Double-layer OLEDs with treated ITO as the anode and poly(9,9-dihexyl-9H-fluorene-2,7-diyl) and 8-hydroxyquinoline aluminum salt as the hole transporter and emitting material,respectively,have been realized.The electrical and optical properties of OLEDs have been extensively investigated,and it is shown that UV ozone-HC1 combined treatment yields the highest hole injection efficiency and luminance and the lowest drive voltage.For each OLED with treated ITO,the anode potential barrier height decrease is estimated using Fowler-Nordheim and Schottky-Richardson modeling of the electrical conduction.
机译:研究了氧化铟锡(ITO)薄膜的电学,化学和形态学性质与有机发光二极管(OLED)性能之间的关系。我们报道了化学(HCl,食人鱼溶液),热(真空退火) ,物理(氧等离子体,UV臭氧)以及对ITO层的综合处理。已使用四点探针电阻率测量方法,接触角测量,X射线衍射,表面轮廓测定法和UV研究了这些不同处理的效果可见光透射率。双层OLED,分别以ITO为阳极,聚(9,9-二己基-9H-芴-2,7-二基)和8-羟基喹啉铝盐分别作为空穴传输和发光材料。对OLED的电学和光学性能进行了广泛的研究,结果表明,UV臭氧-HCl的组合处理产生了最高的空穴注入效率和亮度,并且驱动电压最低。阳极使用Fowler-Nordheim和Schottky-Richardson的电导模型估算势垒高度的下降。

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