Division of Chemistry and Chemical Engineering, California Institute of Technology , Pasadena, California 91125, United States.
J Am Chem Soc. 2013 Dec 26;135(51):19075-8. doi: 10.1021/ja4104974. Epub 2013 Dec 16.
A series of tetranuclear oxo/hydroxo clusters comprised of three Fe centers and a redox-inactive metal (M) of various charge is reported. Crystallographic studies show an unprecedented Fe3M(μ4-O)(μ2-OH) core that remains intact upon changing M or the oxidation state of iron. Electrochemical studies reveal that the reduction potentials (E1/2) span a window of 500 mV and depend upon the Lewis acidity of M. Using the pKa of the M-aqua complex as a measure of Lewis acidity, these compounds display a linear dependence between E1/2 and acidity, with a slope of ∼70 mV per pKa unit. The current study of [Fe3MO(OH)] and previous ones of [Mn3MOn] (n = 2,4) moieties support the generality of the above relationship between the reduction potentials of heterometallic oxido clusters and the Lewis acidity of incorporated cations, as applied to clusters of different redox-active metals.
本文报道了一系列由三个 Fe 中心和一个氧化还原惰性金属(M)组成的四核氧/羟基金属簇。晶体学研究表明,存在一个前所未有的 Fe3M(μ4-O)(μ2-OH)核心,其在改变 M 或铁的氧化态时保持完整。电化学研究表明,还原电位(E1/2)跨越 500 mV 的窗口,并且取决于 M 的路易斯酸度。使用 M-水合配合物的 pKa 作为路易斯酸度的度量,这些化合物在 E1/2 和酸度之间表现出线性关系,斜率约为每 pKa 单位 70 mV。本研究的 [Fe3MO(OH)] 和之前的 [Mn3MOn](n = 2,4)部分支持了异核氧代簇的还原电位与所包含阳离子的路易斯酸度之间的上述关系的普遍性,适用于不同氧化还原活性金属的簇。