Davenport Chemical Research Laboratories, Department of Chemistry, University of Toronto, 80 St. George Street, Toronto, Ontario M5S 3H6, Canada.
Department of Chemistry, University of Rochester, Rochester, New York 14627, United States.
Inorg Chem. 2021 Sep 20;60(18):13811-13820. doi: 10.1021/acs.inorgchem.1c00683. Epub 2021 May 27.
As prevalent cofactors in living organisms, iron-sulfur clusters participate in not only the electron-transfer processes but also the biosynthesis of other cofactors. Many synthetic iron-sulfur clusters have been used in model studies, aiming to mimic their biological functions and to gain mechanistic insight into the related biological systems. The smallest [2Fe-2S] clusters are typically used for one-electron processes because of their limited capacity. Our group is interested in functionalizing small iron-sulfur clusters with redox-active ligands to enhance their electron storage capacity, because such functionalized clusters can potentially mediate multielectron chemical transformations. Herein we report the synthesis, structural characterization, and catalytic activity of a diferric [2Fe-2S] cluster functionalized with two -phenylenediamide ligands. The electrochemical and chemical reductions of such a cluster revealed rich redox chemistry. The functionalized diferric cluster can store up to four electrons reversibly, where the first two reduction events are ligand-based and the remainder metal-based. The diferric [2Fe-2S] cluster displays catalytic activity toward silylation of dinitrogen, affording up to 88 equiv of the amine product per iron center.
作为生物体内普遍存在的辅助因子,铁硫簇不仅参与电子传递过程,还参与其他辅助因子的生物合成。许多合成的铁硫簇已被用于模型研究,旨在模拟它们的生物学功能,并深入了解相关的生物系统的机理。由于其有限的容量,最小的[2Fe-2S]簇通常用于单电子过程。我们的研究小组对用氧化还原活性配体功能化小的铁硫簇以增强其电子存储能力感兴趣,因为这样的功能化簇可以潜在地介导多电子化学反应。本文报道了用两个邻苯二胺配体功能化的双核[2Fe-2S]簇的合成、结构表征和催化活性。该簇的电化学和化学还原揭示了丰富的氧化还原化学。该功能化双核[2Fe-2S]簇可可逆地存储多达四个电子,其中前两个还原事件基于配体,其余基于金属。双核[2Fe-2S]簇对氮气的硅烷化反应具有催化活性,每个铁中心可获得高达 88 当量的胺产物。