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首页> 外文期刊>Chemistry: A European journal >Reactivity of molecular dioxygen towards a series of isostructural dichloroiron(III) complexes with tripodal tetraamine ligands: General access to mu-oxodiiron(III) complexes and effect of alpha-fluorination on the reaction kinetics
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Reactivity of molecular dioxygen towards a series of isostructural dichloroiron(III) complexes with tripodal tetraamine ligands: General access to mu-oxodiiron(III) complexes and effect of alpha-fluorination on the reaction kinetics

机译:分子双氧对具有三脚架四胺配体的一系列同构二氯铁(III)配合物的反应性:普遍使用mu-oxodiiron(III)配合物和α-氟化作用对反应动力学的影响

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摘要

We have synthesized the mono, di-, and tri-alpha-fluoro ligands in the tris(2-pyridylmethyl)amine (TPA) series, namely, FTPA, F(2)TPA and F(3)TPA, respectively. Fluorination at the alpha-position of these nitrogen-containing tripods shifts the oxidation potential of the ligand by 45-70 mV per added fluorine atom. The crystal structures of the dichloroiron(II) complexes with FTPA and F(2)TPA reveal that the iron center lies in a distorted octahedral geometry comparable to that already found in TPAFeCl(2). All spectroscopic data indicate that the geometry is retained in solution. These three isostructural complexes all react with molecular dioxygen to yield stable mu-oxodiiron(III) complexes. Crystal structure analyses are reported for each of these three mu-oxo compounds. With TPA, a symmetrical structure is obtained for a dicationic compound with the tripod coordinated in the kappa N-4 coordination mode. With FTPA, the compound is a neutral mu-oxodiiron(III) complex with a kappa N-3 coordination mode of the ligand. Oxygenation of the F(2)TPA complex gave a neutral unsymmetrical compound, the structure of which is reminiscent of that already found with the trifluorinated ligand. On reduction, all mu-oxodiiron(III) complexes revert to the starting iron(II) species. The oxygenation reaction parallels the well-known formation of mu-oxo derivatives from dioxygen in the chemistry of porphyrins reported almost three decades ago. The striking feature of the series of iron(II) precursors is the effect of the ligand on the kinetics of oxygenation of the complexes. Whereas the parent complex undergoes 90 % conversion over 40 h, the monofluorinated ligand provides a complex that has fully reacted after 30 h, whereas the reaction time for the complex with the difluorinated ligand is only 10 h. Analysis of the spectroscopic data reveals that formation of the mu-oxo complexes proceeds in two distinct reversible kinetic steps with k(1) approximate to 10k(2). For TPAFeCl(2) and FTPAFeCl(2) only small variations in the k(1) and k(2) values are observed. By contrast, F(2)TPAFeCl(2), exhibits k(1) and k(2) values that are ten times higher. These differences in kinetics are interpreted in the light of structural and electronic effects, especially the Lewis acidity at the metal center. Our results suggest coordination of dioxygen as an initial step in the process leading to formation of mu-oxodiiron(III) compounds, by contrastwith an unlikely outer-sphere reduction of dioxygen, which generally occurs at negative potentials.
机译:我们已经合成了三(2-吡啶基甲基)胺(TPA)系列中的单,二和三α-氟配体,分别是FTPA,F(2)TPA和F(3)TPA。这些含氮三脚架的α位上的氟化作用使每个加成的氟原子使配体的氧化电位移动45-70 mV。带有FTPA和F(2)TPA的二氯铁(II)配合物的晶体结构表明,铁中心位于变形的八面体几何结构中,与已经在TPAFeCl(2)中发现的相当。所有光谱数据表明几何形状保留在溶液中。这三种同构配合物都与分子双氧反应生成稳定的mu-oxodiiron(III)配合物。报告了这三种mu-oxo化合物各自的晶体结构分析。使用TPA,可以得到三脚架以kappa N-4配位模式配位的二元化合物的对称结构。对于FTPA,该化合物是中性的mu-oxodiiron(III)配合物,具有配体的κN-3配位模式。 F(2)TPA配合物的氧合产生中性的不对称化合物,其结构让人联想到三氟配体已经发现的结构。还原后,所有mu-oxodiiron(III)络合物均还原为起始铁(II)物种。氧合反应与近三十年前报道的卟啉化学中众所周知的由双氧形成mu-oxo衍生物相似。一系列铁(II)前体的显着特征是配体对配合物氧化动力学的影响。母体复合物在40小时内发生90%的转化,而单氟化配体提供的复合物在30小时后已完全反应,而复合物与二氟化配体的反应时间仅为10小时。对光谱数据的分析表明,mu-oxo配合物的形成在两个不同的可逆动力学步骤中进行,k(1)近似于10k(2)。对于TPAFeCl(2)和FTPAFeCl(2),仅观察到k(1)和k(2)值的微小变化。相比之下,F(2)TPAFeCl(2)表现出的k(1)和k(2)值高十倍。这些动力学差异是根据结构和电子效应,尤其是金属中心的路易斯酸度来解释的。我们的研究结果表明,在形成mu-oxodiiron(III)化合物的过程中,将双氧作为初始步骤进行协调,与此相反,在外层发生的双氧还原反应通常不太可能发生,这通常在负电势下发生。

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