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首页> 外文期刊>Chemistry, an Asian journal >Versatile Benzimidazole/Triphenylamine Hybrids: Efficient Nondoped Deep-Blue Electroluminescence and Good Host Materials for Phosphorescent Emitters
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Versatile Benzimidazole/Triphenylamine Hybrids: Efficient Nondoped Deep-Blue Electroluminescence and Good Host Materials for Phosphorescent Emitters

机译:多功能苯并咪唑/三苯胺杂化物:高效的非掺杂深蓝色电致发光和磷光发射体的良好主体材料

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Two new bipolar compounds, N,N,N',N'-tetraphenyl-5'-(1-phenyl-1H-benzimidazol-2-yl)-1,1':3',1"-terphenyl-4,4"-diamine (1) and N,N,N',N'-tetraphenyl-5'-(1-phenyl-1H-benzimidazol-2-yl)-1,1':3',1"-terphenyl-3,3"-diamine (2), were synthesized and characterized, and their thermal, photophysical, and electrochemical properties were investigated. Compounds 1 and 2 possess good thermal stability with high glass-transition temperatures of 109-129 deg C and thermal decomposition temperatures of 501-531deg C. The fluorescence quantum yield of 1 (0.52) is higher than that of 2 (0.16), which could be attributed to greater pi conjugation between the donor and acceptor moieties. A nondoped deep-blue fluorescent organic light-emitting diode (OLED) using 1 as the blue emitter displays high performance, with a maximum current efficiency of 2.2 cd A~(-1) and a maximum external efficiency of 2.9percent at the CIE coordinates of (0.17, 0.07) that are very close to the National Television System Committee's blue standard (0.15, 0.07). Electrophosphorescent devices using the two compounds as host materials for green and red phosphor emitters show high efficiencies. The best performance of a green phosphorescent device was achieved using 2 as the host, with a maximum current efficiency of 64.3 cd A~(-1) and a maximum power efficiency of 68.3 lmW~(-1); whereas the best performance of a red phosphorescent device was achieved using 1 as the host, with a maximum current efficiency of 11.5 cd A~(-1), and a maximum power efficiency of 9.8 lmW~(-1). The relationship between the molecular structures and optoelectronic properties are discussed.
机译:两种新的双极性化合物N,N,N',N'-四苯基-5'-(1-苯基-1H-苯并咪唑-2-基)-1,1':3',1“-三联-4,4 “-二胺(1)和N,N,N',N'-四苯基-5'-(1-苯基-1H-苯并咪唑-2-基)-1,1':3',1”-三联-3合成了3,3“-二胺(2)并对其进行了表征,并对其热,光物理和电化学性质进行了研究。化合物1和2具有良好的热稳定性,具有109-129摄氏度的高玻璃化转变温度和501-531摄氏度的热分解温度。1(0.52)的荧光量子产率高于2(0.16)的荧光量子产率。可以归因于供体和受体部分之间更大的π共轭。使用1作为蓝色发射器的无掺杂深蓝色荧光有机发光二极管(OLED)显示高性能,在CIE坐标下的最大电流效率为2.2 cd A〜(-1),最大外部效率为2.9% (0.17,0.07)中的一个非常接近国家电视系统委员会的蓝色标准(0.15,0.07)。使用这两种化合物作为绿色和红色荧光粉发射体的主体材料的电致磷光器件显示出高效率。以2为主体,可实现绿色磷光器件的最佳性能,最大电流效率为64.3 cd A〜(-1),最大功率效率为68.3 lmW〜(-1)。而以1为主体的红色磷光器件的最佳性能是,其最大电流效率为11.5 cd A〜(-1),最大功率效率为9.8 lmW〜(-1)。讨论了分子结构与光电性能之间的关系。

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