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受乙酰辅酶A合成酶活性位点启发的配体差异化双镍配合物中的位点特异性氧化还原性质。

Site specific redox properties in ligand differentiated di-nickel complexes inspired by the acetyl CoA synthase active site.

作者信息

Quiroz Manuel, Jana Manish, Liu Kaiyang, Bhuvanesh Nattamai, Hall Michael B, Darensbourg Marcetta Y

机构信息

Department of Chemistry, Texas A & M University, College Station, Texas 77843, USA.

出版信息

Dalton Trans. 2024 Apr 30;53(17):7414-7423. doi: 10.1039/d4dt00306c.

Abstract

Bimetallic transition metal complexes with site-specific redox properties offer a versatile platform for understanding electron polarization, intramolecular electron transfer processes, and customizing electronic and magnetic properties that might impact reactivity and catalyst design. Inspired by the dissymmetric nickel sites in the Acetyl CoA Synthase (ACS) Active Site, three new bimetallic Ni(NS)-Ni(SCR) complexes based on Ni(NS) metalloligand donor synthons, Ni, in mimicry of the nickel site distal to the redox-active iron sulfur cluster of ACS, and nickel dithiolene receiver units, designated as Ni, the nickel proximal to the 4Fe4S cluster, were combined to explore the influence of ligand environment on electronic structure and redox properties of each unit. The combination of synthons gave a matrix of three S-bridged dinickel complexes, characterized by X-ray crystallography, and appropriate spectroscopies. Computational modeling is connected to the electronic characteristics of the nickel donor and receiver units. This study demonstrated the intricacies of identifying sites of electrochemical redox processes, within multi-metallic systems containing non-innocent ligands.

摘要

具有位点特异性氧化还原性质的双金属过渡金属配合物为理解电子极化、分子内电子转移过程以及定制可能影响反应性和催化剂设计的电子和磁性性质提供了一个通用平台。受乙酰辅酶A合成酶(ACS)活性位点中不对称镍位点的启发,基于镍(NS)金属配体供体合成子、模拟ACS氧化还原活性铁硫簇远端镍位点的镍(NS),以及作为镍二硫纶受体单元(指定为镍,靠近4Fe4S簇)的镍,合成了三种新型双金属Ni(NS)-Ni(SCR)配合物,以探索配体环境对每个单元电子结构和氧化还原性质的影响。合成子的组合得到了三种S桥连双镍配合物的矩阵,通过X射线晶体学和适当的光谱学进行了表征。计算建模与镍供体和受体单元的电子特性相关。这项研究证明了在含有非无辜配体的多金属系统中识别电化学氧化还原过程位点的复杂性。

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