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轴向联苯酚配体稳定二铁(III)-双卟啉配合物的中间自旋态:血卟啉环间相互作用的影响

Unusual stabilization of an intermediate spin state of iron upon the axial phenoxide coordination of a diiron(III)-bisporphyrin: effect of heme-heme interactions.

机构信息

Department of Chemistry, Indian Institute of Technology Kanpur, Kanpur-208016 (India).

出版信息

Chemistry. 2013 Oct 4;19(41):13732-44. doi: 10.1002/chem.201301242. Epub 2013 Sep 2.

Abstract

The binding of a series of substituted phenols as axial ligands onto a diiron(III)bisporphyrin framework have been investigated. Spectroscopic characterization revealed high-spin states of the iron centers in all of the phenolate complexes, with one exception in the 2,4,6-trinitrophenolate complex of diiron(III)bisporphyrin, which only stabilized the pure intermediate-spin (S=3/2) state of the iron centers. The average FeN (porphyrin) and FeO (phenol) distances that were observed with the 2,4,6-trinitrophenolate complex were 1.972(3) Å and 2.000(2) Å, respectively, which are the shortest and longest distances reported so far for any Fe(III) porphyrin with phenoxide coordination. The alternating shift pattern, which shows opposite signs of the chemical shifts for the meta versus ortho/para protons, is attributed to negative and positive spin densities on the phenolate carbon atoms, respectively, and is indicative of π-spin delocalization onto the bound phenolate. Electrochemical data reveals that the E1/2 value for the Fe(III) /Fe(II) couple is positively shifted with increasing acidity of the phenol. However, a plot of the E1/2 values for the Fe(III) /Fe(II) couple versus the pKa values of the phenols shows a linear relationship for all of the complexes, except for the 2,4,6-trinitrophenolate complex. The large deviation from linearity is probably due to the change of spin for the complex. Although 2,4,6-trinitrophenol is the weakest axial ligand in the series, its similar binding with the corresponding Fe(III) monoporphyrin only results in stabilization of the high-spin state. The porphyrin macrocycle in the 2,4,6-trinitrophenolate complex of diiron(III)bisporphyrin is the most distorted, whilst the "ruffling" deformation affects the energy levels of the iron d orbitals. The larger size and weaker binding of 2,4,6-trinitrophenol, along with hemeheme interactions in the diiron(III)bisporphyrin, are responsible for the larger ring deformations and eventual stabilization of the pure intermediate-spin states of the iron centers in the complex.

摘要

一系列取代酚作为轴向配体与二铁(III)-双卟啉骨架结合的情况已经过研究。光谱特征表明,所有酚盐络合物中的铁中心均处于高自旋态,但二铁(III)-双卟啉的 2,4,6-三硝基酚盐络合物除外,该络合物仅稳定铁中心的纯中间自旋(S=3/2)态。与 2,4,6-三硝基酚盐络合物观察到的平均 FeN(卟啉)和 FeO(苯酚)距离分别为 1.972(3)Å和 2.000(2)Å,这是迄今为止报道的任何具有苯酚配位的 Fe(III)卟啉中最短和最长的距离。交替位移模式显示出对位/间位质子的化学位移的符号相反,这归因于酚盐碳原子上的负和正自旋密度,表明π-自旋离域到结合的酚盐上。电化学数据表明,随着苯酚酸度的增加,Fe(III)/Fe(II)对的 E1/2 值正向移动。然而,Fe(III)/Fe(II)对的 E1/2 值与酚的 pKa 值的关系图显示,除了 2,4,6-三硝基酚盐络合物外,所有络合物都呈线性关系。这种线性关系的大偏差可能是由于络合物的自旋变化所致。尽管 2,4,6-三硝基苯酚是该系列中最弱的轴向配体,但它与相应的 Fe(III)-单卟啉的类似结合仅导致高自旋态的稳定。二铁(III)-双卟啉的 2,4,6-三硝基酚盐络合物中的卟啉大环是最扭曲的,而“起皱”变形会影响铁 d 轨道的能级。2,4,6-三硝基苯酚较大的尺寸和较弱的结合力,以及二铁(III)-双卟啉中的血红素-血红素相互作用,导致更大的环变形,并最终稳定该络合物中铁中心的纯中间自旋态。

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