首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Effect of fluorine substitution of the b- ketoiminate ancillary ligand on photophysical properties and electroluminescence ability of new iridium( III) complexes
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Effect of fluorine substitution of the b- ketoiminate ancillary ligand on photophysical properties and electroluminescence ability of new iridium( III) complexes

机译:B-酮亚昔氨酸辅助配体氟取代对新铱(III)复合物的光药性能和电致发光能力的影响

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In this paper we report studies of the electronic structure as well as photophysical and emissive properties of a family of new heteroleptic iridium(iii) complexes of the general formula [Ir(bzq)(2)((NO)-O-perpendicular to)] with N,O-donating -ketoiminate ligands equipped with different directly fluorinated N-aryl moieties. For this purpose, a series of suitable -ketoimines were prepared and successfully employed in the synthesis of iridium(iii) phosphorescent materials. It is worth emphasizing that the developed synthetic strategy, involving the use of microwaves to accelerate the reaction course, allows reduction of the process time by up to 10 minutes. All the obtained complexes were characterized by spectroscopic methods and the structures of three of them were resolved by X-ray methods. The cyclic voltammetry measurements allowed determination of the energies of HOMO and LUMO levels of the studied complexes. Moreover, the HOMO-LUMO gaps predicted for these compounds by DFT methods showed a good correlation with the experimental values. The determined negligible influence of ligand modification on LUMO levels and only small change of HOMO levels explains the observed slight effect of different directly fluorinated N-aryl moieties on photophysical properties of the complexes. All Ir complexes were tested in host-guest type organic light emitting diodes (PhOLEDs) with an poly(N-vinylcarbazole):2-tert-butylphenyl-5-biphenyl-1,3,4-oxadiazole matrix. The PhOLEDs based on all studied iridium complexes emitted green light. The most efficient phosphorescent emitter turned out to be the iridium complex with one fluorine atom substituted in the para position in the phenyl ring of the ancillary ligand. Diodes with the emissive layer containing 1 wt% of this emitter showed the best operating parameters: luminance of about 13000 cd m(-2) and current efficiency close to 10 cd A(-1). A comparison of photoluminescence, electroluminescence and spectrally resolved thermoluminescence spectra of the investigated systems revealed an important role of charge carrier trapping in the TL phenomena.
机译:在本文中,我们报告了对通式[IR(BZQ)(2)((NO)-O-垂直于)的新型异式铱(III)复合物的一系列新的异素铱(III)复合物的光物理和发射性能的研究[N,O- o-捐赠的-KetOiminate配体,配备有不同的直接氟化N-芳基部分。为此目的,制备了一系列合适的-KetoImines并成功地用于合成铱(III)磷光材料。值得强调的是,发达的合成策略,涉及使用微波以加速反应过程,可以将过程时间减少到10分钟。通过光谱方法表征所有得到的络合物,并通过X射线方法解决其中的三种结构。循环伏安法测量允许测定研究的复合物的HOMO和LUMO水平的能量。此外,通过DFT方法预测这些化合物的同性恋间隙显示出与实验值的良好相关性。固定配体改性对Lumo水平的可忽略不计的影响,并且只有HOMO水平的小变化解释了不同直接氟化N-芳基部分对复合物的光学性质的观察到的轻微效果。用聚(N-乙烯基咔唑):2-叔丁基苯基-5-联苯-1,3,4-二苯基-1,3,4-恶二唑基,在宿主式客房型有机发光二极管(Pholed)中进行所有红外配合物。基于所有研究的铱络合物的Pholed发出了绿灯。最有效的磷光发射器原来是铱络合物,其中一个氟原子在辅助配体的苯环中取代。具有1wt%的发射器的发光层的二极管显示出最佳的操作参数:亮度约为13000cd m(-2),电流效率接近10cd a(-1)。调查系统的光致发光,电致发光和光谱分辨热致发光光谱的比较揭示了电荷载体捕获在T1现象中的重要作用。

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