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Anthracene-Containing Binaphthol Chromophores for Light-Emitting Diode (LED) Fabrication

机译:含蒽的联萘酚发色团用于发光二极管(LED)的制备

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摘要

Non-crystalline anthracene-containing binaphthol chromophores were synthesized, characterized, and used in the fabrieation of organic light-emitting diodes (OLEDs). Specifically, the target molecules were 2, 2′-dihexyloxy-1, 1′-binaphlhol-6, 6′-bisan-thracene (BA1) and 2, 2′-dimethoxyy-1, 1′-binaphthol-6, 6′-bisanthracene (BA2). Molecules BA1 and BA2 provide amorphous solids, as determined by their glass-transition temperature (T_g) measured by differential scanning calorimelry (DSC). Efficient multilayer OLEDs containing BA1 and BA2 were fabricated by evaporation techniques. Differences in the electroluminescence frequencies of these devices suggests that the degree of alkoxide substitution controls the mobility within the binaphthol material, and therefore the recombination region in the device. Compound BA2 can also be used to dope CBP ((4, 4′-bis(carba-zol-9-yl)biphenyl)) in the fabrication of highly efficient OLEDs.
机译:合成,表征了含非晶态蒽的联萘酚发色团,并将其用于有机发光二极管(OLED)的制造中。具体而言,靶分子是2,2'-二己氧基-1,1'-联萘-6,6'-bisan-thracene(BA1)和2,2'-二甲氧基-1,1'-binaphthol-6,6' -双蒽(BA2)。分子BA1和BA2提供无定形固体,这是由通过差示扫描量热法(DSC)测量的玻璃化转变温度(T_g)确定的。通过蒸发技术制备了包含BA1和BA2的高效多层OLED。这些器件的电致发光频率的差异表明,醇盐的取代度控制联萘酚材料内的迁移率,并因此控制器件中的重组区域。在高效OLED的制造中,化合物BA2也可用于掺杂CBP((4,4'-双(carba-zol-9-基)联苯)。

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