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首页> 外文期刊>Inorganica Chimica Acta >Syntheses, structural, spectroscopic and magnetic properties of polynuclear Fe(III) complexes containing N and O donor ligands
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Syntheses, structural, spectroscopic and magnetic properties of polynuclear Fe(III) complexes containing N and O donor ligands

机译:含N和O供体配体的多核Fe(III)配合物的合成,结构,光谱和磁性

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Syntheses, X-ray structural and spectroscopic properties are reported for [{Fe(L)(2)}(3)Fe] (1), [Fe-2(L)(2)(ClCH2COO)(2)(H2O)] (2) and [Fe(L)(HL)](2) (3) [H2L = a tridentate ONO-donor ligand N-(2-hydroxyphenyl) salicylidenimine]. For (2) and (3), variable temperature magnetic susceptibilities have been measured and modeled. Both are antiferromagnetic overall. Compound 1 has a tetranuclear Fe4O6 core with Fe(III) species at the vertices of a triangle and the fourth Fe(III) at the center of the triangle. The central Fe(III) is surrounded by six phenoxo bridges that connect it to the three peripheral Fe(III) centres. In complex 2, the two six-coordinate Fe(III) centers are bridged by a chloroacetate and two phenoxy oxygens. The remaining three coordination sites on each iron are occupied by a terminal phenoxy oxygen, an imino nitrogen and, in one case, by a water oxygen while in the other by a terminal chloroacetate oxygen. Comparison of 2 with compounds of similar core structure reveals transition between antiferromagnetic and ferromagnetic coupling occurs at a bridgehead angle between similar to 97 degrees and similar to 102 degrees. The asymmetric unit of compound 3 consists of two symmetry-independent mononuclear species (Z' = 2) joined by two statistically equivalent short (2.429(2) and 2.432(2) angstrom) O center dot center dot center dot H center dot center dot center dot O bridges, each involving two phenolic oxygens and a strongly bound H atom. Unprecedented weak antiferromagnetic coupling between the two high spin Fe(III) species via these very strong hydrogen bonds was detected. (C) 2016 Elsevier B.V. All rights reserved.
机译:报告了[{Fe(L)(2)}(3)Fe](1),[Fe-2(L)(2)(ClCH2COO)(2)(H2O)的合成,X射线结构和光谱性质](2)和[Fe(L)(HL)](2)(3)[H2L =三齿ONO供体配体N-(2-羟苯基)水杨亚胺]。对于(2)和(3),已经对可变磁化率进行了测量和建模。两者都是反铁磁的。化合物1具有四核Fe4O6核,在三角形的顶点具有Fe(III)种类,在三角形的中心具有第四Fe(III)。中心的Fe(III)被六个苯氧基桥所包围,这些桥将其连接到三个外围的Fe(III)中心。在络合物2中,两个六配位的Fe(III)中心被氯乙酸盐和两个苯氧基氧桥接。每个铁上的其余三个配位点被末端苯氧基氧,亚氨基氮占据,在一种情况下被水氧占据,而在另一种情况下被末端氯乙酸氧占据。将2与具有相似核心结构的化合物进行比较后发现,反铁磁耦合与铁磁耦合之间的过渡发生在桥头角度介于97度和102度之间。化合物3的不对称单元由两个独立于对称性的单核物质(Z'= 2)和两个统计学上相等的短(2.429(2)和2.432(2)埃)连接而成O中心点中心点中心点H中心点中心点中心点O桥,每个桥都包含两个酚氧基和一个牢固结合的H原子。通过这些非常强的氢键检测到两个高自旋Fe(III)物种之间前所未有的弱反铁磁耦合。 (C)2016 Elsevier B.V.保留所有权利。

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