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Synthesis, characterization and optoelectronic properties of oligo(p-phenylenvinylidenequinolines) with different substituents

机译:不同取代基寡核苷酸(对苯基乙烯基喹啉)的合成,表征和光电性能

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2,2'-(2,5-bisoctyloxy-1,4-phenylenvinylidene)bis-8-acetoxyquinoline (TrimQ 1), 2,2'-(2,5-bisoctyloxy-l,4-phenylendivinylene)bis-6-bromoquinoline (TrimQ2)2,2'-(2,5-bisoctyloxy-1,4-phenylendivinylene)bis(8-acetoxy-5,7-dichloro)quinoline (TrimQ3), were synthesized and characterized by different spectroscopic methods. The fluorescent properties of these bisphenylenvinylenquinoline oligomers were analyzed by fluorescence spectroscopy and then the quantum yields were calculated. The order of light emitting properties: (TrimQ3) (quantum yield, 75%) > (TrimQ2) (quantum yield, 21% ) > (TrimQ1) (quantum yield, 5%), showing that TrimQ3 is more suitable for OLED construction than other compounds. Thin films were prepared by spin coating from concentrated solutions of the compounds using a polystyrene (PS) matrix on glass. Prototypes of diodes were fabricated using ITO/organic film/In-Ga a configuration. For all the devices, electroluminescence properties also were analyzed through applying a voltage larger than 8V and a current of 4 m A
机译:2,2' - (2,5-双辛酰氧基-1,4-苯基乙烯基)双-8-乙酰氧基喹啉(TrimQ 1),2,2' - (2,5-双辛酰氧基-1,4-苯基尼亚基)双-6-通过不同的光谱方法合成溴喹啉(TrimQ2)2,2' - (2,5-双乙酰氧基-1,4-苯基)喹啉(TrimQ3)的喹啉(TrimQ3)。通过荧光光谱分析这些双苯基喹啉喹啉低聚物的荧光特性,然后计算量子产率。发光性能的顺序:(TRIM Q 3)(量子产率,75%)>(TREM产率,21%)>(TREM屈服,5%),显示TrimQ3更适合于OLED施工其他化合物。通过在玻璃上使用聚苯乙烯(PS)基质从化合物的浓溶液旋涂来制备薄膜。使用ITO /有机薄膜/ IN-GA配置制造二极管原型。对于所有设备,通过施加大于8V的电压和4米A的电流,还通过施加电致发光性能。

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