首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Structural, MALDI-TOF-MS, Magnetic and Spectroscopic Studies of New Dinuclear Copper(II), Cobalt(II) and Zinc(II) Complexes Containing a Biomimicking μ-OH bridge
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Structural, MALDI-TOF-MS, Magnetic and Spectroscopic Studies of New Dinuclear Copper(II), Cobalt(II) and Zinc(II) Complexes Containing a Biomimicking μ-OH bridge

机译:结构,MALDI-TOF-MS,磁性和光谱学研究新型的具有仿生μ-OH桥联的双核铜(II),钴(II)和锌(II)配合物

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摘要

The Py_2N_4S_2 octadentate coordinating ligand afforded dinuclear cobalt, copper and zinc complexes and the corresponding mixed metal compounds. The overall geometry and bonding modes have been deduced on the basis of elemental analysis data, MALDI-TOF-MS, IR, UV-vis and EPR spectroscopies, single-crystal X-Ray diffraction, conductivity and magnetic susceptibility measurements. In the copper and zinc complexes, a μ-hydroxo bridge links the two metal ions. In both cases, the coordination geometry is distorted octahedral. Magnetic and EPR data reveal weakly antiferromagnetic high spin Co(II) ions, compatible with a dinuclear structure. The magnetic characterization of the dinuclear Cu(II) compound indicates a ferromagnetically coupled dimer with weak antiferromagnetic intermolecular interactions. The intra-dimer ferromagnetic behaviour was unexpected for a Cu(II) dimer with such μ-hydroxo bridging topology. We discuss the influence on the magnetic properties of non-covalent interactions between the bridging moiety and the lattice free water molecules.
机译:Py_2N_4S_2八齿配位配体提供了双核钴,铜和锌配合物以及相应的混合金属化合物。根据元素分析数据,MALDI-TOF-MS,IR,UV-vis和EPR光谱,单晶X射线衍射,电导率和磁化率测量,推导出了整体的几何形状和键合模式。在铜和锌络合物中,μ-羟基桥将两个金属离子连接在一起。在这两种情况下,配位几何都是八面体变形的。磁性和EPR数据显示弱反铁磁性高自旋Co(II)离子,与双核结构兼容。双核Cu(II)化合物的磁性表征表明,铁磁耦合的二聚体具有弱的反铁磁分子间相互作用。对于具有这种μ-羟基桥接拓扑结构的Cu(II)二聚体,二聚体内铁磁行为是出乎意料的。我们讨论对桥接部分和无晶格水分子之间非共价相互作用的磁性的影响。

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