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Low cost UV-Ozone reactor mounted for treatment of electrode anodes used in P-OLEDs devices

机译:低成本的UV-臭氧反应器,用于处理P-OLED器件中使用的电极阳极

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Low cost UV-Ozone reactor using a high pressure mercury vapor lamp of 80 watts without outer bulb showed good results for treatment of ITO films used as anode electrode in the assembly of P-OLED (polymer-organic light emitting diode) devices. This study revealed 20 minutes as effective treatment time and it was verified also that the effect of UV-Ozone treatment loses its efficiency as the elapsed time increases. It was analyzed with measurements of contact angle using a droplet of PEDOT:PSS polymer. P-OLEDs devices were mounted with architecture: ITO/PEDOT:PSS/PVK/Alq3/Al. The PVK polymer was diluted in organic solvent of 1,2,4-trichlorobenzene with concentrations of: 5, 10, 20 and 30 mg/mL. Results revealed better performance of P-OLED devices for concentration of 5 mg/mL resulting in lower threshold voltage, elevation of electrical current and similar diode curve.
机译:使用80瓦特的高压汞蒸气灯而没有外部灯泡的低成本UV-臭氧反应器在处理用作P-OLED(聚合物-有机发光二极管)设备的阳极电极的ITO膜时显示出了良好的效果。这项研究揭示了20分钟为有效的治疗时间,并且还证实了紫外线臭氧处理的效果会随着经过时间的增加而失去其效率。使用一滴PEDOT:PSS聚合物,通过测量接触角来进行分析。 P-OLED器件安装有以下结构:ITO / PEDOT:PSS / PVK / Alq3 / Al。将PVK聚合物在1,2,4-三氯苯的有机溶剂中稀释,浓度为:5、10、20和30 mg / mL。结果表明,在浓度为5 mg / mL的情况下,P-OLED器件的性能更好,从而导致阈值电压降低,电流升高并且二极管曲线相似。

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