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Enhancement of light emission from an Europium(III) complex based-OLED by using layer-by-layer assembled hole-transport films

机译:通过使用层逐层组装的空穴传输膜来增强来自铕(III)复合物的光发射

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Rare earth complexes hold a promising future in light-emitting devices owing to their strong and sharp luminescence with very high quantum efficiency. Here we report an effective yet very simple way to study and eventually enhance the optoelectronic performance of an organic light emitting device (OLED) based on europium(III) tris(dibenzoylmethane) mono(1,10-phenanthroline), Eu(DBM)_3Phen as an emitter. The approach is based on the layer-by-layer deposition of hole-transport films made of PANI/PEDOT:PSS bilayers onto the ITO anode, prior to the emissive layer. As a main advantage, the procedure ensures a great control of the hole-transport film thickness at nanometer level, and thus provides different interfacial conditions. Moreover, we have observed that the device's current density and luminance are increased when PANI/PEDOT:PSS bilayers are applied. Such OLEDs emit purple color due to contributions from both Eu(III) and PVK emissions.
机译:由于具有非常高的量子效率,稀土化合物在发光器件中举行了一个有希望的未来。在这里,我们报告了一种基于铕(III)Tris(二苯甲酰甲烷)单铕(1,10-菲咯啉),EU(DBM)_3Phen(DBM)_3Phen(DBM)_3Phen(DBM)_3Phen的有效且最终提高有机发光器件(OLED)的光电性能的方法和最终提高有机发光器件(OLED)的光电性能。作为发射器。该方法基于由PANI / PEDOT:PSS双层制成的空穴传输膜的逐层沉积,在发光层之前在ITO阳极上。作为主要优点,该方法确保对纳米水平的空穴传输膜厚度的极大控制,从而提供不同的界面条件。此外,我们观察到,当PANI / PEDOT:PSS双层时,器件的电流密度和亮度增加。由于欧盟(III)和PVK排放的贡献,这种OLED发出了紫色。

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