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Pyranylidene indene-1,3-dione derivatives as an amorphous red electroluminescence material

机译:吡喃基二茚-1,3-二酮衍生物作为非晶红色电致发光材料

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The organic light-emitting diode (OLED) has promising applications in flat-panel displays and novel light sources. Thus far, OLED structures have mostly been made by thermal evaporation in vacuum. An alternative approach is to use small molecules that form amorphous (glassy) structures from solutions. Such compounds can be used in ink jet printing technologies and result in reduced OLED prices. We present an original red fluorescent organic compound 2-(2-(4-(bis(2-(trityloxy)ethyl)amino)styryl)-6-methyl-4H-pyran-4-ylidene)-1H-indene-1,3(2H)-dione (ZWK1), and its derivative 2-(2,6-bis(4-(bis(2-(trityloxy)ethyl) amino)styryl)-4Hpyran-4-ylidene)-1H-indene-1,3(2H)-dione (ZWK2), where the methyl group is replaced with a 4-substituted-styryl group. This change could improve the formation of glassy structures.The thickness of the electroluminescent layer in the device is optimized to the higher power efficiency and obtains: ITO/PEDOT:PSS (40 nm)/ZWK1 (95 nm)/LiF (1 nm)/A1 (100 nm),and ITO/PEDOT:PSS (40 nm)/ZWK2 (85 nm)/LiF (1 nm)/Al (100 nm). The maximum of electroluminescence (EL) spectra for the device with the ZWK1 compound is 667 nm, which corresponds to the CIE coordinates x = 0.65 and y = 0.34. The power and luminance efficiency at a luminance of 100 cd/m~2 is 0.63 1m/W and 1.78 cd/A, respectively. Adding an additional 4-substituted-styryl group to the ZWK1 molecule shifts the maximum of EL spectra to the red region (705 nm) and decreases the efficiencies by one order.
机译:有机发光二极管(OLED)在平板显示器和新颖的光源中具有希望的应用。到目前为止,OLED结构主要是通过真空蒸发的热蒸发而制成的。另一种方法是使用从溶液中形成无定形(玻璃状)结构的小分子。这些化合物可用于喷墨印刷技术,并降低OLED价格。我们提出了原始的红色荧光有机化合物2-(2-(2-(2-(2-(Trityloxy)乙基)氨基)styryl)-6-甲基-4H-吡喃-4- ylidene)-1H-茚-1, 3(2H) - 二酮(ZWK1)及其衍生物2-(2,6-双(2,6-双(双(2-(Trityloxyloxy)乙基)氨基)styryl)-4HPyran-4- ylidene)-1H-茚 - 1,3(2H) - 二酮(ZWK2),其中甲基替换为4-取代的-TYRYL基团。这种变化可以改善玻璃结构的形成。器件中的电致发光层的厚度优化到更高的功率效率并获得:ITO / PEDOT:PSS(40nm)/ Zwk1(95nm)/ LiF(1nm) / A1(100nm)和ITO / PEDOT:PSS(40nm)/ ZWK2(85nm)/ LiF(1nm)/ Al(100nm)。具有ZWK1化合物的装置的电致发光(EL)光谱的最大值为667nm,其对应于CIE坐标X = 0.65和Y = 0.34。亮度为100cd / m〜2的功率和亮度效率分别为0.631m / w和1.78cd / a。向ZWK1分子中加入另外的4取代 - styryl组将EL光谱的最大值变为红色区域(705nm),并通过一个顺序降低效率。

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