甲烷单加氧酶
甲烷
金属有机骨架
微型多孔材料
催化作用
反应性(心理学)
生物催化
活动站点
化学
甲醇
组合化学
金属
电化学
无机化学
材料科学
有机化学
反应机理
吸附
物理化学
电极
病理
医学
替代医学
作者
Dmitrii Osadchii,Alma I. Olivos Suarez,Ágnes Szécsényi,Guanna Li,Maxim Nasalevich,Iulian Dugulan,Pablo Serra‐Crespo,Emiel J. M. Hensen,Sergey L. Veber,Matvey V. Fedin,Gopinathan Sankar,Evgeny A. Pidko,Jorge Gascón
出处
期刊:ACS Catalysis
[American Chemical Society]
日期:2018-05-10
卷期号:8 (6): 5542-5548
被引量:246
标识
DOI:10.1021/acscatal.8b00505
摘要
Hybrid materials bearing organic and inorganic motifs have been extensively discussed as playgrounds for the implementation of atomically resolved inorganic sites within a confined environment, with an exciting similarity to enzymes. Here, we present the successful design of a site-isolated mixed-metal metal organic framework (MOF) that mimics the reactivity of soluble methane monooxygenase enzyme and demonstrates the potential of this strategy to overcome current challenges in selective methane oxidation. We describe the synthesis and characterization of an Fe-containing MOF that comprises the desired antiferromagnetically coupled high-spin species in a coordination environment closely resembling that of the enzyme. An electrochemical synthesis method is used to build the microporous MOF matrix while integrating the atomically dispersed Fe active sites in the crystalline scaffold. The model mimics the catalytic C–H activation behavior of the enzyme to produce methanol and shows that the key to this reactivity is the formation of isolated oxo-bridged Fe units.
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