首页> 外文期刊>Inorganica Chimica Acta >The Fe(III) complexes with a doubly deprotonated polydentate acylhydrazone: crystal structure of the first diamagnetic mu-oxo-diiron(III) complex
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The Fe(III) complexes with a doubly deprotonated polydentate acylhydrazone: crystal structure of the first diamagnetic mu-oxo-diiron(III) complex

机译:Fe(III)与双去质子化多齿酰基hydr的配合物:第一个反磁性的mu-oxo-diiron(III)配合物的晶体结构

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The synthesis of two Fe(III) complexes with a doubly deprotonated polydentate of the acylhydrazone class is described. The first complex was obtained by hydrolyzing the previously synthesized high-spin pentagonal-bipyramidal (PBP) [Fe(Hdapsox)Cl-2] (H(2)dapsox = 2',2"'-(2,6-pyridindiyldiethylidene)dioxamohydrazide); the second was obtained by a template synthesis in a base medium starting from iron(III) chloride, 2,6-diacetylpyridine (dap) and semioxamazide (sox) (in a 1:1:2 molar ratio). Hydrolysis, during which the semioxamazide amide group changed into a carboxyl group, resulted in the mu -oxo-diiron(III) complex [Fe(dapoamh)(H2O)(2)O . 3H(2)O (H(2)dapoamh = dioxo-2,6-pyridinediylbis(ethylidyne-1-hydrazinyl-2-ylidene)diacetic acid) with a doubly deprotonated acylhydrazone that retained its PBP geometry. The [Fe(dapsox)Cl].H2O complex obtained in the latter case has a square-pyramidal geometry with an asymmetrically coordinated, but still doubly deprotonated dapsox as a tetradentate. The structure of the [Fe(dapoamh)(H2O)(2)O . 3H(2)O complex determined by single-crystal X-ray analysis in this work represents the first mu -oxo-dimer of a PBP geometry with an acyclic polydentate. This is also the first diamagnetic Cl-oxo-diiron(III) complex ever obtained; this not only points to the super-exchange interaction over an ore-oxygen, but also to a significant interaction between the two low-spin Fe(III) ion d-orbitals. Based on the EPR spectra, it has been established that the monomer [Fe(dapsox)Cl].H2O complex is among the rare Fe(III) complexes with an intermediate spin state S = 3/2, and that a temperature decrease causes it to change to a low-spin complex, i.e. it demonstrates a cross-over (S = 3/2 reversible arrow S = 1/2). Further characterization has been done by IR and UV-VIS spectroscopy, and also by measuring the magnetic momentum at 293, 195 and 77 K. The results of this work, as well as of the previously synthesized Cu(II), Co(II) and Ni(II) complexes with H(2)dapsox, Hdapsox(-) and dapsox(2-), have led us to the conclusion that the doubly deprotonated acylhydrazone ligand has a considerably stronger field than its neutral or monoanionic forms. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 46]
机译:描述了两个带有(hydr类双去质子化多齿的Fe(III)配合物的合成。通过水解先前合成的高自旋五角双锥体(PBP)[Fe(Hdapsox)Cl-2](H(2)dapsox = 2',2“'-(2,6-pyridindiyldiethylideneidene)dioxamohydrazide获得第一个配合物。 );第二种是通过在基础介质中以氯化铁(III),2,6-二乙酰基吡啶(dap)和Semioxamazide(sox)(摩尔比为1:1:2)开始的模板合成而获得的。的半恶嗪酰胺基团变成一个羧基,形成了mu -oxo-diiron(III)络合物[Fe(dapoamh)(H2O)(2)O。3H(2)O(H(2)dapoamh = dioxo- 2,6-吡啶二基双(乙炔基-1-肼基-2-亚基)二乙酸与双去质子化的酰基hydr保持其PBP几何形状,在后一种情况下获得的[Fe(dapsox)Cl] .H2O络合物具有金字塔形几何结构,具有不对称配位,但仍以双齿质子化的双去质子化。[Fe(dapoamh)(H2O)(2)O.3H(2)O络合物的结构通过单晶X射线分析确定工作代表具有无环多齿的PBP几何结构的第一个mu-oxo-二聚体。这也是有史以来第一个抗磁性的Cl-oxo-diiron(III)络合物。这不仅指出了矿石氧上的超交换相互作用,而且还指出了两个低自旋Fe(III)离子d轨道之间的显着相互作用。根据EPR光谱,已确定单体[Fe(dapsox)Cl] .H2O配合物是稀有的Fe(III)配合物,其中间自旋态S = 3/2,并且温度降低导致它改变为低自旋复合物,即显示交叉(S = 3/2可逆箭头S = 1/2)。通过红外光谱和紫外可见光谱,以及通过测量293、195和77 K处的磁动量,进行了进一步的表征。这项工作以及先前合成的Cu(II),Co(II)的结果Ni(II)与H(2)dapsox,Hdapsox(-)和dapsox(2-)的配合物使我们得出以下结论:双去质子化的酰基hydr配体比其中性或单阴离子形式具有更强的电场。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:46]

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