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Fabrication of Organic Light Emitting Diode using a Vacuum Free Lamination Method on Different Anode and Substrate Materials

机译:在不同阳极和基材材料上使用真空自由层压方法的有机发光二极管的制造

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In this paper we report the results of OLED (organic light emitting diodes) fabricated using a completely vacuum free lamination method. Aluminum foil purchased from office supply stores is used as a cathode. Anodes are prepared from three different materials, Indium Thin Oxide (ITO), Fluorine doped Thin Oxide (FTO), and TC-07S (Denshi Kako, Co., LTD). Three anode materials were grown on three different types of substrates, glass, PET, and lamination plastic. Poly (9.9-dioctylfluorenyl) (PFO) which is used as an emissive layer was coated on pre-cleaned aluminum foil by spin coating method. The anode and cathode part are laminated under heated laminator at 130°C. We found that OLEDs fabricated using TC-07S as anodes and lamination plastics as substrates produce the best optical characteristics. The effect of TC-07S thickness on electrical characteristics was also examined. We found that the thicker the TC-07S layer caused higher currents level but not significantly increase the light intensity.
机译:在本文中,我们报告了使用完全真空自由层压法制造的OLED(有机发光二极管)的结果。从办公用品店购买的铝箔用作阴极。阳极由三种不同的材料制备,少量薄氧化物(ITO),氟掺杂薄氧化物(FTO)和TC-07S(Denshi Kako,Co.,Ltd)。在三种不同类型的基板,玻璃,PET和层压塑料上生长了三种阳极材料。用作发光层的聚(9.9-二辛基氟苯基)(PFO)通过旋涂法涂覆在预清洗铝箔上。阳极和阴极部分在130℃下在加热的层压机下层叠。我们发现使用TC-07S制造的OLED作为阳极和层压塑料,因为基板产生最佳光学特性。还检查了TC-07S厚度对电特性的影响。我们发现TC-07S层越厚,导致高电流水平但没有显着增加光强度。

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