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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Novel phosphorescent cationic iridium(III) complexes with o-carboranylation on the ancillary N boolean AND N ligand
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Novel phosphorescent cationic iridium(III) complexes with o-carboranylation on the ancillary N boolean AND N ligand

机译:新型磷光阳离子铱(III)复合物在辅助N布尔和N配体上用O-Carboranylation复合物

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A novel series of heteroleptic iridium complexes with 2-phenyl-pyridine as a main ligand and carborane- functionalized 2,2'-bipyridine as an ancillary ligand were synthesized, and characterized as [Ir(ppy) 2(By)] PF6 (where ppy is 2-phenyl-pyridine, By is 5-(2-R-Cb)-2,2'-bipyridine, R = H (2a), CH3 (2b), Ph (2c), iPr (2d) and iBu (2e), or By is 4-(2-R-Cb)-2,2'-bipyridine while R = H (3a), CH3 (3b), Ph (3c), iPr (3d) and iBu (3e), Cb = o-carboran-1-yl). The R groups and the substitution sites of carborane on the pyridine ring have caused differences in the emission properties of these complexes. In addition, the quantum efficiency of [Ir(ppy) 2(By)] PF6 complexes has been tuned as well through the introduction of various 2-R-substituted o-carboranes into the ancillary ligand 2,2'-bipyridine, no matter in the solid state (from 0.12 to 0.25) or in solution (from 0.04 to 0.25). The emission color was tuned from yellow to red by the o-carboranyl unit because of its inductive effect. Density functional theory (DFT) and time dependent DFT (TD-DFT) calculations have been applied to investigate excitedstate electronic structures of the newly synthesized complexes, which are consistent with the observed red-shift emissions.
机译:合成了一种具有2-苯基 - 吡啶作为主要配体和碳硼酸酯的2,2'-硼丙啶作为辅助配体作为辅助配体的新颖的异素铱配合物,并表征为[IR(PPY)2(逐)] PF6(其中PPY是2-苯基吡啶,通过是5-(2-R-CB)-2,2'-联吡啶,R = H(2A),CH 3(图2b)中,Ph(2C),的iPr(2D)和的iBu (2E),或通过是4-(2-R-CB)-2,2'-硼啶,而R = H(3A),CH 3(3B),pH(3C),IPR(3D)和IBU(3E) ,cb = o-carboran-1-yl)。吡啶环上的碳硼烷的替代位点引起了这些配合物的排放性能的差异。此外,通过将各种2-R取代的O-碳硼烷引入辅助配体2,2'-Bi吡啶的情况下,[IR(PPY)2(逐)] PF6复合物的量子效率也得到了调整,无论如何在固态(0.12至0.25)或溶液中(0.04至0.25)。由于其感应效果,通过O-Carboranyl单元从黄色到红色调谐发光颜色。密度函数理论(DFT)和时间依赖性DFT(TD-DFT)计算已经应用于研究新合成的复合物的灭绝电子结构,这与观察到的红移排放一致。

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