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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Synthesis, Characterization, and Photophysical and Electroluminescent Properties of Blue-Emitting Cationic Iridium(III) Complexes Bearing Nonconjugated Ligands
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Synthesis, Characterization, and Photophysical and Electroluminescent Properties of Blue-Emitting Cationic Iridium(III) Complexes Bearing Nonconjugated Ligands

机译:含非共轭配体的发蓝阳离子铱(III)配合物的合成,表征以及光物理和电致发光性能

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摘要

The development of pure-blue-to-deep-blue-emitting ionic phosphors is an ultimate challenge for full-color displays and white-light sources. Herein we report two series of shortwavelength light-emitting cationic iridium(III) complexes with nonconjugated ancillary and cyclometalating ligands, respectively. In the first series, nonconjugated 1-[(diphenylphosphino)methyl]- 3-methylimidazolin-2-ylidene-C,C_2′ (dppmmi) is used as the ancillary ligand and 2-phenylpyridine (ppy), 2-(2,4- difluorophenyl)pyridine (dfppy), and 1-(2,4-difluorophenyl)-1Hpyrazole (dfppz) are used as cyclometalating ligands. In the second one, nonconjugated 2,4-difluorobenzyl-N-pyrazole (dfbpz) is used as the cyclometalating ligand and 3-methyl-1-(2-pyridyl)- benzimidazolin-2-ylidene-C,C~2′ (pymbi) as the ancillary ligand. The synthesis and photophysical and electrochemical properties, together with the X-ray crystal structures of these complexes, have been investigated. At room temperature, blue-emitting complexes [Ir(ppy)_2(dppmmi)]PF_6 (1) and [Ir(dfppy)_2(dppmmi)]- PF_6 (2; PF_6~- is hexafluorophosphate) show much larger photoluminescence quantum yields of 24% and 46%, respectively. On the contrary, for complexes [Ir(dfppz)_2(dppmmi)]PF_6 (3) and [Ir(dfbpz)_2(pymbi)]PF_6 (4), deep-blue luminescence is only observed at low temperature (77 K). Density functional theory calculations are used to rationalize the differences in the photophysical behavior observed upon changes of the ligands. It is shown that the electronic transition dipoles of cationic iridium complexes 1 and 2 are mainly confined to cyclometalated ligands (~3MLCT and LC ~3π-π~*) and those of complex 3 are confined to all of the ligands (~3MLCT, LC ~3π-π~*, and 3LLCT) because of the high LUMO energy level of dfppz. The emission of 4 mainly originates from the central iridium(III) ion and cyclometalated ligand to ancillary ligand charge transfer (~3MLCT and ~3LLCT), in contrast to commonly designed cationic complexes using carbene-type ancillary ligands, where emission originates from the cyclometalated main ligands. Solution-processed organic light-emitting diodes based on complexes 1 and 2 gave bluegreen (498 nm) and blue (478 nm) electroluminescence with maximum current efficiencies of 3.8 and 3.4 cd A-1, respectively. The results indicate that introducing nonconjugated ligands into cationic iridium complexes is an effective means of achieving short-wavelength light-emitting phosphors.
机译:对于发出纯蓝色到深蓝色的离子型荧光粉来说,这是全色显示器和白光源面临的最终挑战。在这里,我们报告两个系列的短波长发光阳离子铱(III)配合物分别与非共轭的辅助和环金属化配体。在第一系列中,使用非共轭的1-[((二苯基膦基)甲基] -3-甲基咪唑啉-2-亚基-C,C_2'(dppmmi)作为辅助配体,使用2-苯基吡啶(ppy),2-(2,4 -将二氟苯基)吡啶(dfppy)和1-(2,4-二氟苯基)-1H吡唑(dfppz)用作环金属化配体。在第二种方法中,非共轭的2,4-二氟苄基-N-吡唑(dfbpz)被用作环金属配体,而3-甲基-1-(2-吡啶基)-苯并咪唑啉-2-亚基-C,C〜2'( pymbi)作为辅助配体。已经研究了这些配合物的合成,光物理和电化学性质以及X射线晶体结构。在室温下,发蓝光的配合物[Ir(ppy)_2(dppmmi)] PF_6(1)和[Ir(dfppy)_2(dppmmi)]-PF_6(2; PF_6〜-是六氟磷酸盐)显示出大得多的光致发光量子产率分别为24%和46%。相反,对于复合物[Ir(dfppz)_2(dppmmi)] PF_6(3)和[Ir(dfbpz)_2(pymbi)] PF_6(4),仅在低温(77 K)下观察到深蓝色发光。密度泛函理论计算用于合理化配体变化后观察到的光物理行为差异。结果表明,阳离子铱配合物1和2的电子跃迁偶极主要限于环金属化的配体(〜3MLCT和LC〜3π-π〜*),而配合物3的电子跃迁偶极则限于所有配体(〜3MLCT,LC 〜3π-π〜*和3LLCT),因为dfppz的LUMO能级很高。 4的发射主要来自中心铱离子和环金属化配体到辅助配体的电荷转移(〜3MLCT和〜3LLCT),与通常设计的使用卡宾型辅助配体的阳离子配合物相反,后者的发射源自环金属化主要配体。基于配合物1和2的溶液处理有机发光二极管产生蓝绿色(498 nm)和蓝色(478 nm)电致发光,最大电流效率分别为3.8和3.4 cd A-1。结果表明,将非共轭配体引入阳离子铱配合物中是实现短波长发光磷光体的有效手段。

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