配体拓扑和铁配位数对四甲基环聚糖负载的FeIII-μ-oxo-CrIII配合物电子结构的影响。

IF 3.2 2区 化学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Ruixi Fan, Jin Xiong, Ang Zhou, Wei-Min Ching, Patrick M Crossland, Barbara Lavina, Michael Y Hu, Jiyong Zhao, Esen E Alp, Lawrence Que, Yisong Guo
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引用次数: 0

摘要

利用57Fe Mössbauer、电子顺磁共振和57Fe核共振振动谱对三种不同的由四甲基环烷(TMC, 1,4,8,11-四甲基-1,4,8,11-四氮杂环十四烷)配体衍生的FeIII-O-CrIII配合物进行了表征。[(CH3CN)(TMC)FeIII-Oanti-CrIII(OTf)4(NCCH3)](1)具有反构型,桥接o原子位于TMC所有四个甲基的对面,从而形成六坐标铁中心。同样,由于在TMC的一个甲基上附加了一个吡啶,[(TMC- py)FeIII-Oanti-CrIII(OTf)4(NCCH3)](3)也表现出具有六坐标铁中心的反构型。但对于[(TMC)FeIII-Osyn-CrIII(OTf)4(NCCH3)](2),铁中心是五坐标的,这是由于一个同步构型,桥接的O原子在TMC的所有四个甲基的同一面上。详细的光谱表征表明,这三种配合物都表现出S = 1自旋基态,这是由S = 5/2 FeIII中心和S = 3/2 CrIII中心之间的反铁磁耦合造成的。然而,通过Mössbauer和EPR测量得到的详细磁性能和这些配合物的振动性质,特别是对称和不对称的Fe-O-Cr拉伸模式,密切反映了配体拓扑差异(反与正)和铁中心的配位数。这些光谱性质用于指导密度泛函理论计算,以显示配体拓扑结构如何影响这些配合物的电子结构。因此,本研究提供了这些独特的异双核配合物的全面几何和电子结构的相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of ligand topology and iron coordination number on the electronic structure of FeIII-μ-oxo-CrIII complexes supported by tetramethylcyclam.

57Fe Mössbauer, electron paramagnetic resonance, and 57Fe nuclear resonance vibrational spectroscopies are applied to characterize three different FeIII-O-CrIII complexes derived from the tetramethylcyclam (TMC, 1,4,8,11-tetramethyl-1,4,8,11-tetraazacyclotetradecane) ligand. [(CH3CN)(TMC)FeIII-Oanti-CrIII(OTf)4(NCCH3)] (1) features an anti configuration where the bridging O-atom is located on the opposite face of all four methyl groups of TMC, which leads to a six-coordinate iron center. Similarly, due to the presence of a pyridine appended to one of the methyl groups of TMC, [(TMC-Py)FeIII-Oanti-CrIII(OTf)4(NCCH3)] (3) also exhibits an anti configuration with a six-coordinate iron center. But for [(TMC)FeIII-Osyn-CrIII(OTf)4(NCCH3)] (2), the iron center is five-coordinate due to a syn configuration where the bridging O atom is on the same face of all four methyl groups of TMC. The detailed spectroscopic characterizations reported here reveal that all three complexes exhibit S = 1 spin ground states, which result from antiferromagnetic coupling between an S = 5/2 FeIII center and an S = 3/2 CrIII center. However, the detailed magnetic properties derived from Mössbauer and EPR measurements and vibrational properties of these complexes, particularly the symmetric and asymmetric Fe-O-Cr stretching modes, closely reflect the ligand topology difference (anti vs. syn) and the coordination number of the iron center. These spectroscopic properties are used to guide the density functional theory calculations to show how the ligand topology affects the electronic structures of these complexes. Thus, the current study provides a comprehensive geometric and electronic structure correlation of these unique hetero-dinuclear complexes.

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来源期刊
Journal of Inorganic Biochemistry
Journal of Inorganic Biochemistry 生物-生化与分子生物学
CiteScore
7.00
自引率
10.30%
发文量
336
审稿时长
41 days
期刊介绍: The Journal of Inorganic Biochemistry is an established international forum for research in all aspects of Biological Inorganic Chemistry. Original papers of a high scientific level are published in the form of Articles (full length papers), Short Communications, Focused Reviews and Bioinorganic Methods. Topics include: the chemistry, structure and function of metalloenzymes; the interaction of inorganic ions and molecules with proteins and nucleic acids; the synthesis and properties of coordination complexes of biological interest including both structural and functional model systems; the function of metal- containing systems in the regulation of gene expression; the role of metals in medicine; the application of spectroscopic methods to determine the structure of metallobiomolecules; the preparation and characterization of metal-based biomaterials; and related systems. The emphasis of the Journal is on the structure and mechanism of action of metallobiomolecules.
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