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[FeFe]氢化酶活性位点模拟物的单电子和双电子还原:[2Fe2S]核心的流动性的关键作用。

One- to two-electron reduction of an [FeFe]-hydrogenase active site mimic: the critical role of fluxionality of the [2Fe2S] core.

作者信息

Felton Greg A N, Petro Benjamin J, Glass Richard S, Lichtenberger Dennis L, Evans Dennis H

机构信息

Department of Chemistry and Biochemistry, The University of Arizona, Tucson, Arizona 85721, USA.

出版信息

J Am Chem Soc. 2009 Aug 19;131(32):11290-1. doi: 10.1021/ja904520x.

Abstract

The one- to two-electron reduction of mu-(1,2-ethanedithiolato)diironhexacarbonyl that has been observed under electrochemical conditions is dependent on scan rate and temperature, suggesting activation of a structural rearrangement. This structural rearrangement is attributed to fluxionality of the [2Fe2S] core in the initially formed anion. Computations support this assessment. Upon an initial one-electron reduction, the inherent fluxionality of the [2Fe2S] complex anion allows for a second one-electron reduction at a less negative potential to form a dianionic species. The structure of this dianion is characterized by a rotated iron center, a bridging carbonyl ligand, and, most significantly, a dissociated Fe-S bond. This fluxionality of the [2Fe2S] core upon reduction has direct implications for the chemistry of [FeFe]-hydrogenase mimics and for iron-sulfur cluster chemistry in general.

摘要

在电化学条件下观察到的μ-(1,2-乙二硫醇基)二铁六羰基化合物的单电子或双电子还原取决于扫描速率和温度,这表明发生了结构重排的活化。这种结构重排归因于初始形成的阴离子中[2Fe2S]核心的流动性。计算结果支持这一评估。在初始单电子还原后,[2Fe2S]复合阴离子固有的流动性使得第二次单电子还原能在较低的负电位下发生,从而形成双阴离子物种。该双阴离子的结构特征为铁中心旋转、一个桥连羰基配体,以及最显著的是一个解离的Fe-S键。还原时[2Fe2S]核心的这种流动性对[FeFe]-氢化酶模拟物的化学性质以及一般的铁硫簇化学都有直接影响。

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