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Flexible Organic Battery Technology Applied in OLED

机译:柔性有机电池技术应用于OLED

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The development of Flexible Organic Battery Technology applied in Organic Light Emitting Diode (OLED), using an flexible optically transparent substrate material and organic semiconductor materials, has been widely utilized by the electronic industry when producing new technological products. The Organic Battery are the base Polyaniline, PANI, Lithium Perchlorate, LiClO_4, and Polymethylmethacrylate, PMMA, were deposited in Indium Tin Oxide, ITO, and characterized by UV-Visible Spectroscopy (UV-Vis), Electrical Parameters (EP) and Scanning Electron Microscopy (SEM). In addition, the thin film obtained by the deposition of PANI, prepared in perchloric acid solution, was identified through PANI-X1. The result obtained by UV-Vis has demonstrated that the PVDC/ITO/PANI-X1 layer does not have displacement of absorption for wavelengths greaters after spin-coating and electrodeposition. Also, both electrodes have been united by an electrolyte solution prepared with Lithium Perchlorate, LiCIO4, and Polymethylmethacrylate, PMMA. Thus, the result obtained through electrical measurements has demonstrated that the flexible organic battery presented the characteristic curve of standard battery after spin-coating and electrodeposition. Accordingly, the results obtained with optical and electrical characterization have revealed that the flexible organic battery demonstrated some change in optical absorption, when subjected to a many of charge and electric discharge. Moreover, the inclusion of the PANI-X1 layer reduced the effects of degradation that this charge and electric discharge caused. Studies on Scanning Electron Microscopy (SEM) have found out that the surface of PANI-X1 layers can be strongly conditioned by the surface morphology of the dielectric.
机译:在有机发光二极管(OLED)中施加柔性有机电池技术的开发,使用柔性光学透明的基板材料和有机半导体材料在生产新技术产品时被电子工业广泛利用。有机电池是基础聚苯胺,PANI,高氯酸锂,LICLO_4和聚甲基丙烯酸甲酯,PMMA沉积在氧化铟锡,ITO中,并通过UV可见光谱(UV-VI),电参数(EP)和扫描电子。显微镜(SEM)。另外,通过PANI-X1鉴定通过在高氯酸溶液中制备的PANI沉积而获得的薄膜。通过UV-VI获得的结果表明,PVDC / ITO / PANI-X1层在旋涂和电沉积之后,PVDC / ITO / PANI-X1层没有对波长变大的吸收的位移。而且,两个电极都是通过用高氯酸锂,LICIO4和聚甲基丙烯酸酯,PMMA制备的电解质溶液。因此,通过电测量获得的结果表明,柔性有机电池在旋涂和电沉积后呈现了标准电池的特性曲线。因此,用光学和电学表征获得的结果表明,当经受许多充电和放电时,柔性有机电池在光学吸收中显示出一些变化。此外,包含PANI-X1层的损失效果降低了这种电荷和电放电引起的。扫描电子显微镜(SEM)的研究发现,通过电介质的表面形态,可以强烈地调节PANI-X1层的表面。

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