Heterometallic Triiron-Oxo/Hydroxo Clusters: Effect of Redox-Inactive Metals
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...
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Veröffentlicht in: | Journal of the American Chemical Society 2013-12, Vol.135 (51), p.19075-19078 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | 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 (E 1/2) span a window of 500 mV and depend upon the Lewis acidity of M. Using the pK a of the M-aqua complex as a measure of Lewis acidity, these compounds display a linear dependence between E 1/2 and acidity, with a slope of ∼70 mV per pK a unit. The current study of [Fe3MO(OH)] and previous ones of [Mn3MO n ] (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. |
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ISSN: | 0002-7863 1520-5126 |
DOI: | 10.1021/ja4104974 |