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Poly(p-phenyleneacetylene)-based light-emitting diodes

机译:聚对苯乙炔基发光二极管

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Abstract: A study of poly(p-phenyleneacetylene) (PPA)-based light-emitting diodes (LEDs) is described and discussed. The LEDs were fabricated by spin-coating the indium tin oxide (ITO) coated glass substrate with the 2,5-dibutoxy or 2,5- dihexoxy derivative of PPA dissolved in toluene, followed by evaporation of a layer of Ca and Al or Al only on the polymer. As the spin-coating, drying, and operation of the diodes was performed in air with no heat sink, the Ca/Al devices degraded within a few minutes at room temperature, but were stable in a He ambient at low temperatures. However, it was noted that baking the diodes coated with an Al layer for 2 - 6 hours at 150$DGR@C in a flow of dry N$-2$/ markedly increased their performance. However, no improvement was achieved by baking the polymer laser prior to metallization. It is therefore believed that the baking process removes significant defects from the polymer/metal interface. The nature of these results is discussed in terms of bulk defects as well as defects at the ITO/polymer and polymer/metal interfaces.!25
机译:摘要:描述并讨论了基于聚对苯乙炔(PPA)的发光二极管(LED)的研究。通过用溶解在甲苯中的PPA的2,5-二丁氧基或2,5-二己氧基衍生物旋涂铟锡氧化物(ITO)的玻璃基板来制造LED,然后蒸发一层Ca和Al或Al仅在聚合物上。由于二极管的旋涂,干燥和操作是在没有散热器的空气中进行的,因此Ca / Al器件在室温下在几分钟之内会降解,但在低温的He环境中却很稳定。但是,应注意的是,在干燥的N $ -2 $ /中以150 $ DGR @ C烘烤涂有Al层的二极管2-6小时,可显着提高其性能。然而,在金属化之前通过烘烤聚合物激光器没有获得任何改善。因此,据信烘烤过程从聚合物/金属界面上去除了明显的缺陷。这些结果的性质将根据体缺陷以及ITO /聚合物和聚合物/金属界面处的缺陷进行讨论!25

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