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具有 D 对映体对称结构的同配位铁(III)和铁(IV)配合物

Homoleptic Fe(III) and Fe(IV) Complexes of a Dianionic C-Symmetric Scorpionate.

机构信息

Organic Chemistry & Catalysis, Institute for Sustainable and Circular Chemistry, Utrecht University, 3584 CG Utrecht, The Netherlands.

Structural Biochemistry, Bijvoet Centre for Biomolecular Research, Faculty of Science, Utrecht University, 3584 CG Utrecht, The Netherlands.

出版信息

Inorg Chem. 2023 Jul 10;62(27):10613-10625. doi: 10.1021/acs.inorgchem.3c00871. Epub 2023 Jun 27.

Abstract

High-valent iron species have been implicated as key intermediates in catalytic oxidation reactions, both in biological and synthetic systems. Many heteroleptic Fe(IV) complexes have now been prepared and characterized, especially using strongly π-donating oxo, imido, or nitrido ligands. On the other hand, homoleptic examples are scarce. Herein, we investigate the redox chemistry of iron complexes of the dianonic tris-skatylmethylphosphonium (TSMP) scorpionate ligand. One-electron oxidation of the tetrahedral, bis-ligated [(TSMP)Fe] leads to the octahedral [(TSMP)Fe]. The latter undergoes thermal spin-cross-over both in the solid state and solution, which we characterize using superconducting quantum inference device (SQUID), Evans method, and paramagnetic nuclear magnetic resonance spectroscopy. Furthermore, [(TSMP)Fe] can be reversibly oxidized to the stable high-valent [(TSMP)Fe] complex. We use a variety of electrochemical, spectroscopic, and computational techniques as well as SQUID magnetometry to establish a triplet ( = 1) ground state with a metal-centered oxidation and little spin delocalization on the ligand. The complex also has a fairly isotropic -tensor ( = 1.97) combined with a positive zero-field splitting (ZFS) parameter (+19.1 cm) and very low rhombicity, in agreement with quantum chemical calculations. This thorough spectroscopic characterization contributes to a general understanding of octahedral Fe(IV) complexes.

摘要

高价铁物种被认为是催化氧化反应中的关键中间体,无论是在生物系统还是在合成系统中。现在已经制备和表征了许多异核 Fe(IV)配合物,特别是使用强π供体氧、亚胺或氮化物配体。另一方面,同核配合物则很少见。本文研究了二阴离子三斯卡蒂基甲基膦(TSMP)三角烯配体的铁配合物的氧化还原化学。四面体、双配位的[(TSMP)Fe]的一电子氧化导致八面体的[(TSMP)Fe]。后者在固态和溶液中都经历热自旋交叉,我们使用超导量子干涉装置(SQUID)、埃文斯法和顺磁共振波谱对其进行了表征。此外,[(TSMP)Fe]可以可逆地氧化为稳定的高价[(TSMP)Fe]配合物。我们使用各种电化学、光谱和计算技术以及 SQUID 磁强计来建立一个三重态( = 1)基态,其中金属中心被氧化,配体上的自旋离域很小。该配合物还具有相当各向同性的张量( = 1.97),结合正的零场分裂(ZFS)参数(+19.1 cm)和非常低的反演性,与量子化学计算结果一致。这种全面的光谱表征有助于人们对八面体 Fe(IV)配合物有一个总体的了解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6e5/10336972/972eeefdaef5/ic3c00871_0002.jpg

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