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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 >Series of new cationic iridium(III) complexes with tunable emission wavelength and excited state properties: Structures, theoretical calculations, and photophysical and electrochemical properties
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Series of new cationic iridium(III) complexes with tunable emission wavelength and excited state properties: Structures, theoretical calculations, and photophysical and electrochemical properties

机译:具有可调发射波长和激发态性质的一系列新型阳离子铱(III)配合物:结构,理论计算以及光物理和电化学性质

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摘要

A series of new cationic iridium( III) complexes [ Ir( piq)(2)( N boolean AND N)](+) PF6- ( 1 - 6) ( piq = 1-phenyl-isoquinoline) containing N boolean AND N ligands with different conjugated lengths were synthesized, where the six N boolean AND N ligands were bipyridine, phenanthroline, 2-pyridyl-quinoline, 2,2'- biquinoline, 1,1'-biisoquinoline, and 2-( 2-quniolinyl) quinoxaline. Single-crystal X-ray diffraction spectra of three complexes were studied, and the iridium( III) centers were found to adopt a distorted octahedral coordination geometry with cis metalated carbons and trans nitrogen atoms. UV-vis, photoluminescence, cyclic voltammetry, and theoretical calculations were employed for studying the photophysical and electrochemical properties. And the excited-state properties were investigated in detail. The excited state of complexes is complicated and contains triplet metal-to-ligand charge transfer ( (MLCT)-M-3), triplet ligand-to-ligand charge transfer ( (LLCT)-L-3), and ligand-centered ( cyclometalated) ( (LC)-L-3) transitions simultaneously. Importantly, the emission wavelength can be tuned significantly from 586 to 732 nm by changing the conjugated length of N boolean AND N ligands.
机译:一系列新的阳离子铱(III)配合物[Ir(piq)(2)(N布尔AND N)](+)PF6-(1-6)(piq = 1-苯基-异喹啉)包含N布尔AND N配体合成了具有不同共轭长度的化合物,其中六个N布尔AND N配体为联吡啶,菲咯啉,2-吡啶基喹啉,2,2'-联喹啉,1,1'-二异喹啉和2-(2-喹啉基)喹喔啉。研究了三种配合物的单晶X射线衍射谱,发现铱(III)中心具有顺式金属碳原子和反式氮原子的扭曲的八面体配位几何形状。紫外可见光,光致发光,循环伏安法和理论计算被用于研究光物理和电化学性质。并详细研究了激发态性质。配合物的激发态很复杂,并且包含三重态金属到配体的电荷转移((MLCT)-M-3),三重态配体到配体的电荷转移((LLCT)-L-3)和以配体为中心的( (LC)-L-3)同时跃迁。重要的是,通过改变N个布尔AND N个配体的共轭长度,可以将发射波长从586 nm显着调整到586 nm。

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