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双(α-二亚胺)铁配合物:通过光谱学和破缺对称性密度泛函理论计算确定电子结构

Bis(alpha-diimine)iron complexes: electronic structure determination by spectroscopy and broken symmetry density functional theoretical calculations.

作者信息

Muresan Nicoleta, Lu Connie C, Ghosh Meenakshi, Peters Jonas C, Abe Megumi, Henling Lawrence M, Weyhermöller Thomas, Bill Eckhard, Wieghardt Karl

机构信息

Max-Planck Institute for Bioinorganic Chemistry, Mülheim an der Ruhr, Germany.

出版信息

Inorg Chem. 2008 Jun 2;47(11):4579-90. doi: 10.1021/ic7022693. Epub 2008 Apr 29.

Abstract

The electronic structure of a family comprising tetrahedral (alpha-diimine)iron dichloride, and tetrahedral bis(alpha-diimine)iron compounds has been investigated by Mossbauer spectroscopy, magnetic susceptibility measurements, and X-ray crystallography. In addition, broken-symmetry density functional theoretical (B3LYP) calculations have been performed. A detailed understanding of the electronic structure of these complexes has been obtained. A paramagnetic (St=2), tetrahedral complex [FeII(4L)2], where (4L)1- represents the diamagnetic monoanion N-tert-butylquinolinylamide, has been synthesized and characterized to serve as a benchmark for a Werner-type complex containing a tetrahedral FeIIN4 geometry and a single high-spin ferrous ion. In contrast to the most commonly used description of the electronic structure of bis(alpha-diimine)iron(0) complexes as low-valent iron(0) species with two neutral alpha-diimine ligands, it is established here that they are, in fact, complexes containing two (alpha-diiminato)1-* pi radical monoanions and a high-spin ferrous ion (in tetrahedral N4 geometry) (SFe=2). Intramolecular antiferromagnetic coupling between the pi radical ligands (Srad=1/2) and the ferrous ion (SFe=2) yields the observed St=1 ground state. The study confirms that alpha-diimines are redox noninnocent ligands with an energetically low-lying antibonding pi* lowest unoccupied molecular orbital which can accept one or two electrons from a transition metal ion. The (alpha-diimine)FeCl2 complexes (St=2) are shown to contain a neutral alpha-diimine ligand, a high spin ferrous ion, and two chloride ligands.

摘要

通过穆斯堡尔光谱、磁化率测量和X射线晶体学研究了由四面体(α-二亚胺)二氯化铁和四面体双(α-二亚胺)铁化合物组成的家族的电子结构。此外,还进行了破缺对称性密度泛函理论(B3LYP)计算。已获得对这些配合物电子结构的详细理解。合成并表征了一种顺磁性(St = 2)的四面体配合物[FeII(4L)2],其中(4L)1-代表抗磁性单阴离子N-叔丁基喹啉酰胺,用作含有四面体FeIIN4几何结构和单个高自旋亚铁离子的维尔纳型配合物的基准。与最常用的将双(α-二亚胺)铁(0)配合物的电子结构描述为具有两个中性α-二亚胺配体的低价铁(0)物种相反,这里确定它们实际上是含有两个(α-二亚胺基)1-π自由基单阴离子和一个高自旋亚铁离子(处于四面体N4几何结构)(SFe = 2)的配合物。π自由基配体(Srad = 1/2)与亚铁离子(SFe = 2)之间的分子内反铁磁耦合产生了观察到的St = 1基态。该研究证实α-二亚胺是氧化还原非无辜配体,具有能量较低的反键π最低未占据分子轨道,可从过渡金属离子接受一个或两个电子。(α-二亚胺)FeCl2配合物(St = 2)显示含有一个中性α-二亚胺配体、一个高自旋亚铁离子和两个氯配体。

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