Reactive high-spin iron(IV)-oxo sites through dioxygen activation in a metal-organic framework.

Hou, Kaipeng; Börgel, Jonas; Jiang, Henry Z H; SantaLucia, Daniel J; Kwon, Hyunchul; Zhuang, Hao; Chakarawet, Khetpakorn; Rohde, Rachel C et al. · Science · 2023

basic_science · Level V

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Abstract

In nature, nonheme iron enzymes use dioxygen to generate high-spin iron(IV)=O species for a variety of oxygenation reactions. Although synthetic chemists have long sought to mimic this reactivity, the enzyme-like activation of O<sub>2</sub> to form high-spin iron(IV) = O species remains an unrealized goal. Here, we report a metal-organic framework featuring iron(II) sites with a local structure similar to that in α-ketoglutarate-dependent dioxygenases. The framework reacts with O<sub>2</sub> at low temperatures to form high-spin iron(IV) = O species that are characterized using in situ diffuse reflectance infrared Fourier transform, in situ and variable-field Mössbauer, Fe Kβ x-ray emission, and nuclear resonance vibrational spectroscopies. In the presence of O<sub>2</sub>, the framework is competent for catalytic oxygenation of cyclohexane and the stoichiometric conversion of ethane to ethanol.