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基于吡啶-胺配体的铱(III)和铑(III)胺、亚胺和酰胺配合物的形成:反应条件、取代基变化和金属中心引起的结构多样性。

Formation of Iridium(III) and Rhodium(III) Amine, Imine, and Amido Complexes Based on Pyridine-Amine Ligands: Structural Diversity Arising from Reaction Conditions, Substituent Variation, and Metal Centers.

机构信息

School of Chemistry and Chemical Engineering, Qufu Normal University, Qufu 273165, P. R. China.

出版信息

Inorg Chem. 2022 Jul 4;61(26):10051-10065. doi: 10.1021/acs.inorgchem.2c00984. Epub 2022 Jun 23.

DOI:10.1021/acs.inorgchem.2c00984
PMID:35735792
Abstract

Herein, we present the different coordination modes of half-sandwich iridium(III) and rhodium(III) complexes based on pyridine-amine ligands. The pyridyl-amine iridium(III) and rhodium(III) complexes, the corresponding oxidation pyridyl-imine products, and 16-electron pyridyl-amido complexes can be obtained through the change in reaction conditions (nitrogen/adventitious oxygen atmosphere, reaction time, and solvents) and structural variations in the metal and ligand. Overall, the reaction of pyridine-amine ligands with [(η-C(CH))MCl] (M = Ir or Rh) in the presence of adventitious oxygen afforded the oxidized pyridyl-imine complexes. The possible mechanism for the oxidation of iridium(III) and rhodium(III) amine complexes was confirmed by the detection of the byproduct hydrogen peroxide. Moreover, the formation of pyridyl-amine complexes was favored when nonpolar solvent CHCl was used instead of CHOH. The rarely reported complex with [(η-Cp*)IrCl] anions can also be obtained without the addition of NHPF. The introduction of the sterically bulky -Bu group on the bridge carbon of the ligand led to the formation of stable 16-electron pyridyl-amido complexes. The pyridyl-amine iridium(III) and rhodium(III) complexes were also synthesized under a N atmosphere, and no HO was detected in the whole process. In particular, the aqueous solution stability and in vitro cytotoxicity toward A549 and HeLa human cancer cells of these complexes were also evaluated. No obvious selectivity was observed for cancer cells versus normal cells with these complexes. Notably, the represented complex can promote an increase in the reactive oxygen species level and induce cell death via apoptosis.

摘要

在此,我们展示了基于吡啶-胺配体的半夹心铱(III)和铑(III)配合物的不同配位模式。通过改变反应条件(氮/外来氧气氛、反应时间和溶剂)和金属及配体的结构变化,可以得到吡啶-胺铱(III)和铑(III)配合物、相应的氧化吡啶-亚胺产物和 16 电子吡啶-酰胺配合物。总的来说,吡啶-胺配体与[(η-C(CH))MCl](M = Ir 或 Rh)在外来氧存在下反应得到氧化的吡啶-亚胺配合物。通过检测副产物过氧化氢,证实了氧化铱(III)和铑(III)胺配合物的反应可能机制。此外,当使用非极性溶剂 CHCl 而不是 CHOH 时,有利于形成吡啶-胺配合物。也可以在不添加 NHPF 的情况下获得具有[(η-Cp*)IrCl]阴离子的罕见报道的配合物。在配体的桥碳原子上引入空间位阻较大的-Bu 基团,导致稳定的 16 电子吡啶-酰胺配合物的形成。在 N 气氛下也合成了吡啶-胺铱(III)和铑(III)配合物,整个过程中未检测到 HO。特别评估了这些配合物在水中的稳定性和对 A549 和 HeLa 人癌细胞的体外细胞毒性。这些配合物对癌细胞和正常细胞没有明显的选择性。值得注意的是,代表配合物[Cp*Ir(pyAm)(MeCN)]PF6可以通过增加活性氧物种水平并诱导细胞凋亡来促进细胞死亡。

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