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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 >Microwave-Accelerated C,N-Cyclometalation as a Route to Chloro-Bridged Iridium(III) Binuclear Precursors of Phosphorescent Materials: Optimization, Synthesis, and Studies of the Iridium(III) Dimer Behavior in Coordinating Solvents
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Microwave-Accelerated C,N-Cyclometalation as a Route to Chloro-Bridged Iridium(III) Binuclear Precursors of Phosphorescent Materials: Optimization, Synthesis, and Studies of the Iridium(III) Dimer Behavior in Coordinating Solvents

机译:微波加速的C,N-环荷蚀作为氯桥铱(III)磷光材料的二核前体的途径:优化,合成和研究协调溶剂中的铱(III)二聚体行为的研究

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摘要

We present the results of our research on the use of microwaves as an unconventional heat source for the acceleration of iridium(III) chloro-bridged dimer preparation. The results enabled us to revise and improve known guidelines for the very quick and highly efficient synthesis of iridium(III) dimeric complexes in a very simple isolation manner. According to the developed methodology, the already known dimers containing ligands based on the 2-phenyl-pyridinato motif, as well as new ones stabilized with functionalized benzo[h]quinolinato and 2-phenoxypyridinato-based ligands, were efficiently synthesized. The scope of the incorporated ligands included compounds equipped with electron-donating (-Me, -OMe, -OPh, -NMe2), electron-withdrawing (-F, -Br, -CF3, -C6F5), and hole-transporting (-NPh2, -C6H4NPh2) groups. The obtained complexes were characterized by NMR, X-ray diffraction, and electrospray ionization mass spectrometry methods, and their behavior was examined in the presence of coordinating solvents such as dimethyl sulfoxide and acetonitrile. Investigation of the interactions between the above-mentioned solvents and dimers enabled us to confirm the ability of the former to cleave mu-chloride bridges, which enriches the knowledge in the field of organometallic chemistry. This knowledge can be particularly useful for the scientists working in the field of iridium-based materials, helping to avoid misinterpretation of the spectroscopic data.
机译:我们提出了我们对使用微波作为加速铱(III)氯桥接二聚体制剂的非传统热源的研究结果。结果使我们能够以非常简单的隔离方式修改和改进铱(III)二聚体复合物的非常快速和高效合成的已知指南。根据开发的方法,有效地合成了基于2-苯基 - 吡啶氨基乙酰基的配体的已知二聚体,以及稳定用官能化苯并[H]喹啉酸盐和2-苯氧基吡啶基配体的新型。掺入的配体的范围包括配备有电子给予的化合物(-ME,-ME,-OPH,-NME2),吸收电子(-F,-BR,-CF3,-C6F5)和空穴传输( - NPH2,-C6H4NPH2)组。通过NMR,X射线衍射和电喷雾电离质谱法表征所获得的配合物,并在配位溶剂如二甲基亚砜和乙腈的情况下检查它们的行为。对上述溶剂和二聚体之间的相互作用的研究使我们能够确认前者裂解穆氯桥的能力,这丰富了有机金属化学领域的知识。这种知识对于在基于铱的材料领域工作的科学家尤其有用,有助于避免光谱数据的误解。

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