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19F NMR Study of Ligand Dynamics in Carboxylate-Bridged Diiron(II) Complexes Supported by a Macrocyclic Ligand

机译:大环配体负载的羧酸桥联二铁(II)配合物中配体动力学的19 F NMR研究

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摘要

A series of asymmetrically carboxylate-bridged diiron(II) complexes featuring fluorine atoms as NMR spectroscopic probes, [Fe2(PIM)(Ar4F-PhCO2)2] (>10), [Fe2(F2PIM)(ArTolCO2)2] (>11), and [Fe2(F2PIM)(Ar4F-PhCO2)2] (>12), were prepared and characterized by X-ray crystallography, Mössbauer spectroscopy, and VT 19F NMR spectroscopy. These complexes are part of a rare family of syn-N diiron(II) complexes, [Fe2(X2PIM)(RCO2)2], that are structurally very similar to the active site of the hydroxylase enzyme component of reduced methane monooxygenase (MMOHred). Solution characterization of these complexes demonstrates that they undergo intramolecular carboxylate rearrangements, or carboxylate shifts, a dynamic feature relevant to the reactivity of the diiron centers in bacterial multicomponent monooxygenases.
机译:一系列以氟原子为核磁共振谱探针[Fe2(PIM)(Ar 4F-Ph CO2)2](> 10 ),[Fe2(F2PIM)(Ar Tol CO2)2](> 11 )和[Fe2(F2PIM)(Ar 4F-Ph 制备了CO2)2](> 12 )并通过X射线晶体学,Mössbauer光谱和VT 19 F NMR进行了表征。这些络合物是稀有的Syn-N二铁(II)络合物家族[Fe2(X2PIM)(RCO2)2]的一部分,其结构非常类似于还原甲烷单加氧酶(MMOHred)的羟化酶组分的活性位点。这些复合物的溶液表征表明它们会发生分子内羧酸盐重排或羧酸盐移位,这是一种与细菌多组分单加氧酶中二铁中心反应性有关的动态特征。

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