首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >A discrete Cu-6(II) cluster and a 3D Mn-II-Cu-II framework based on assembly of Mn2Cu4 clusters: synthesis, structure and magnetic properties
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A discrete Cu-6(II) cluster and a 3D Mn-II-Cu-II framework based on assembly of Mn2Cu4 clusters: synthesis, structure and magnetic properties

机译:基于组装的Mn2Cu4团簇的离散Cu-6(II)团簇和3D Mn-II-Cu-II骨架:合成,结构和磁性

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The synthesis, single-crystal structure characterization and detailed magnetic study of a homometallic hexanuclear Cu-II cluster [Cu-6(mu(3)-OH)(2)(ppk())6(H2O)2(NO3)(4)] (1) and a three-dimensional (3D) compound [{MnCu2(dpkO(2)H)(2)(dpkO(2))N-3}center dot(NO3)center dot H2O](n) (2) (ppk = phenyl-2-pyridyl ketoxime; dpk = di-2-pyridyl ketone) consisting of heterometallic Mn-II-Cu-II hexanuclear cores as secondary building units are reported in this paper. In compound 1, two symmetry-related Cu-3 triangles consisting of a hydroxido-bridged trinuclear unit, [Cu-3(mu(3)-OH)(ppk)(3)(H2O)(NO3)](+), are assembled through nitrate bridging giving rise to the homometallic Cu-6 cluster. Compound 2 contains heterometallic {(Mn2Cu4II)-Cu-II} cores, which are further connected to each other through an azido bridging ligand in all the crystallographic directions, resulting in a 3D metal-organic framework. Construction of such a heterometallic 3D framework from {(Mn2Cu4II)-Cu-II} units is until now, unknown. Magnetic studies of both 1 and 2 were performed in detail and both compounds show dominant antiferromagnetic interaction in the respective clusters. Compound 1 reveals significant spin frustration and anti-symmetric exchange interaction in the trinuclear cores, with a significantly high value of Jav (-655 cm(-1)). Furthermore, compound 2 exhibits a dominant antiferromagnetic interaction, which is also supported by an extensive magneto-structural correlation which considers the different magnetic pathways
机译:同金属六核Cu-II团簇[Cu-6(mu(3)-OH)(2)(ppk())6(H2O)2(NO3)(4)的合成,单晶结构表征和详细的磁性研究)](1)和三维(3D)化合物[{MnCu2(dpkO(2)H)(2)(dpkO(2))N-3}中心点(NO3)中心点H2O](n)( 2)本文报道了由杂金属Mn-II-Cu-II六核芯作为二级结构单元组成的(ppk =苯基-2-吡啶基酮肟; dpk =二-2-吡啶基酮)。在化合物1中,两个对称相关的Cu-3三角形由羟基桥接的三核单元[Cu-3(mu(3)-OH)(ppk)(3)(H2O)(NO3)](+)组成,通过硝酸盐桥接组装,形成均金属的Cu-6团簇。化合物2包含杂金属{(Mn2Cu4II)-Cu-II}核,这些核还通过叠氮基桥联配体在所有晶体学方向上进一步相互连接,从而形成3D金属-有机骨架。到目前为止,由{{Mn2Cu4II)-Cu-II}单元构建这种异金属3D框架尚不清楚。对1和2进行了详细的磁性研究,两种化合物在各自的簇中均显示出主要的反铁磁相互作用。化合物1揭示了三核核心中显着的自旋失意和反对称交换相互作用,具有相当高的Jav(-655 cm(-1))值。此外,化合物2表现出主要的反铁磁相互作用,这也得到了广泛的磁结构相关性的支持,其中考虑了不同的磁路

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