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首页> 外文期刊>Organic Electronics >Highly twisted tetra-N-phenylbenzidine-phenanthroimidazole based derivatives for blue organic light emitting diodes: Experimental and theoretical investigation
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Highly twisted tetra-N-phenylbenzidine-phenanthroimidazole based derivatives for blue organic light emitting diodes: Experimental and theoretical investigation

机译:用于蓝色有机发光二极管的高度扭曲的四-N-苯基联苯胺-吩并咪唑基衍生物:实验和理论研究

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摘要

A series of blue phenanthroimidazole based molecules with (D-pi-A) structures are designed and synthesized by choosing a tetra-N-phenylbenzidine (TPB) as hole transporting (D) and structurally stable phenanthroimidazole (A) as an electron transporting moieties with the different functional group at the N1 position of phenanthroimidazole. All the molecules were structurally characterized by spectroscopic (H-1, C-13, F-19 NMR and FTIR) method. These molecules showed good thermal stability with high thermal decomposition temperature (T-d ). Their physical properties, including UV-Vis, photoluminescence and electrochemical, were systematically studied. The DFT calculation also carried out to know HOMO-LUMO energy level as well as excited energy level (singlet and triplet) of the molecules. The synthesized molecules were examined via solution-processed organic light emitting diodes (OLEDs). Among all fabricated OLED devices, 1 wt% 1-tert-butylbenzene decorated molecule (PITPB-3) based device showed best electroluminescent performance compare to the other molecules, with a power efficiency of 0.4 lm/W, a current efficiency of 0.7 cd/A and an external quantum efficiency of 1.7% with Commission International deL'Eclairage (CIE) coordinates of (0.15, 0.06) at the brightness 100 cd/m (2), which is precisely meeting with the standards of European Broadcasting Union (EBU) standard for flat-panel displays and solid-state lighting. These results demonstrate that TPB integrated with phenanthroimidazole plays an important role in device performance.
机译:通过选择四-N-苯基联苯胺(TPB)作为空穴传输(D)和结构上稳定的噻吩并咪唑(A)作为电子传输部分,设计和合成了一系列具有(D-pi-A)结构的蓝色菲并咪唑基分子。菲并咪唑N1位的不同官能团。所有分子通过光谱法(H-1,C-13,F-19 NMR和FTIR)进行结构表征。这些分子在高热分解温度(T-d)下表现出良好的热稳定性。系统地研究了它们的物理性能,包括紫外可见光,光致发光和电化学性能。还进行了DFT计算,以了解分子的HOMO-LUMO能级以及激发能级(单重态和三重态)。通过溶液处理的有机发光二极管(OLED)检查合成的分子。在所有制造的OLED器件中,与其他分子相比,基于1 wt%的1-叔丁基苯修饰分子(PITPB-3)的器件显示出最佳的电致发光性能,功率效率为0.4 lm / W,电流效率为0.7 cd / A,外部量子效率为1.7%,在100 cd / m的亮度下(CIE)国际坐标(CIE)坐标为(0.15,0.06)(2),正好符合欧洲广播联盟(EBU)的标准平板显示器和固态照明的标准。这些结果表明,与吩噻唑结合的TPB在器件性能中起着重要作用。

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