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首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Ferromagnetic exchange coupling in phosphonato-bridged dinuclear copper(II) compound with monoethyl (pyridyn-2-ylmethyl)phosphonate ligand (2-mpmpe): Cu-2(2-mpmpe)(2)(H2O)(2)(NO3)(2)
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Ferromagnetic exchange coupling in phosphonato-bridged dinuclear copper(II) compound with monoethyl (pyridyn-2-ylmethyl)phosphonate ligand (2-mpmpe): Cu-2(2-mpmpe)(2)(H2O)(2)(NO3)(2)

机译:磷酸桥接的双核铜(II)化合物与(吡啶-2-基甲基)膦酸单乙酯配体(2-mpmpe)的铁磁交换耦合:Cu-2(2-mpmpe)(2)(H2O)(2)(NO3) (2)

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The interaction of diethyl (pyridyn-2-ylmethyl)phosphonate (2-pmpe) with Cu(NO3)(2)center dot 6H(2)O leads to a partial hydrolysis of the starting ligand and formation of the compound of the formula Cu-2(2-mpmpe)(2)(H2O)(2)(NO3)(2), where 2-mpmpe = monoethyl (pyridyn-2-ylmethyl)phosphonate. The crystal and molecular structure of a copper(II) compound was determined by single X-ray diffraction method. Its structure consists of tive-coordinated in distorted square planar geometry (CuNO4 chromophore) copper(II) ions doubly bridged by OPO from phosphonate. The Cu center dot center dot center dot Cu distance is 4.69 angstrom. The crystal packing is determined by the interdinuclear hydrogen bond system, which leads to a three-dimensional (3D) H-bonds network. The compound was characterized by infrared, ligand field, EPR spectroscopy, and magnetic studies. The magnetic properties of the title compound investigated over the 1.8-300 K, revealed the occurrence of a weak ferromagnetic coupling through phosphonate bridge (J = 1.86 cm(-1)) and interdimer superexchange coupling through H-bond network (zJ' = -0.17 cm(-1)). Spectroscopic and magnetic properties are presented in the light of crystal structure. (C) 2008 Published by Elsevier Ltd.
机译:(吡啶基-2-基甲基)膦酸二乙酯(2-pmpe)与Cu(NO3)(2)中心点6H(2)O的相互作用导致起始配体部分水解并形成式Cu化合物-2(2-mpmpe)(2)(H2O)(2)(NO3)(2),其中2-mpmpe =(吡啶基-2-基甲基)膦酸单乙酯。通过单X射线衍射法测定铜(II)化合物的晶体和分子结构。它的结构包括由OPO与膦酸酯双重桥连的扭曲方形平面几何形状(CuNO4生色团)铜离子的活性配位。 Cu中心点中心点中心点Cu距离为4.69埃。晶体堆积是通过核间氢键系统确定的,这导致了三维(3D)H键网络。通过红外,配体场,EPR光谱和磁学研究对该化合物进行了表征。在1.8-300 K范围内研究标题化合物的磁性,结果表明通过膦酸酯桥(J = 1.86 cm(-1))发生弱铁磁耦合,通过H键网络发生二聚体超交换耦合(zJ'=- 0.17厘米(-1))。根据晶体结构呈现光谱和磁性。 (C)2008由Elsevier Ltd.发布

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