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首页> 外文期刊>Bulletin of the Korean Chemical Society >Synthesis and Electrochemical Study of the Ir(III) Complexes Containing the Diphenyl-quirioline, -Quinoxaline and Pyrazolonate Ligands
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Synthesis and Electrochemical Study of the Ir(III) Complexes Containing the Diphenyl-quirioline, -Quinoxaline and Pyrazolonate Ligands

机译:含联苯-喹啉,-喹喔啉和吡唑啉酸酯配体的Ir(III)配合物的合成和电化学研究

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Ir(dpq/dpqx)2(przl-R) complexes were prepared and their electrochemical properties were investigated, where dpq, dpqx and przl-R represent 2,3-diphenylquinoline, 2,3-diphenylquinoxaline and N-phenyl-R-pyrazolonate derivatives, respectively. The iridium complexes containing dpq and dpqx as main ligands were reported to show red phosphorescence, and involvement of a pyrazolonate ancillary ligand in the iridium complexes led to high luminous efficiency for organic light-emitting diodes. In this study, we synthesized red phosphorescent iridium complexes containing a new pyrazolonate ancillary ligand and investigated the HOMOs, LUMOs and resulting electrochemical gaps of Ir(dpq/dpqx)2(przl-R) by cyclic voltammetry. The emission wavelengths of the complexes at 600 - 640 nm were consistent with the gaps of 1.95 - 2.03 eV measured from reduction and oxidation potentials of the complexes.
机译:制备Ir(dpq / dpqx)2(przl-R)配合物并研究其电化学性质,其中dpq,dpqx和przl-R分别代表2,3-二苯基喹啉,2,3-二苯基喹喔啉和N-苯基-R-吡唑啉酸酯衍生品。据报道,以dpq和dpqx为主要配体的铱配合物显示出红色磷光,并且铱配合物中吡唑啉酸酯辅助配体的参与导致有机发光二极管的高发光效率。在这项研究中,我们合成了含有新的吡唑酮酸酯辅助配体的红色磷光铱配合物,并通过循环伏安法研究了Ir(dpq / dpqx)2(przl-R)的HOMO,LUMO和电化学间隙。从复合物的还原和氧化电势测得,复合物在600-640 nm处的发射波长与1.95-2.03 eV的间隙一致。

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