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首页> 外文期刊>Crystal growth & design >Cu~(II)-Azide Polynuclear Complexes of Three Different Building Clusters with the Same Schiff-Base Ligand: Synthesis, Structures, Magnetic Behavior, and Density Functional Theory Studies
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Cu~(II)-Azide Polynuclear Complexes of Three Different Building Clusters with the Same Schiff-Base Ligand: Synthesis, Structures, Magnetic Behavior, and Density Functional Theory Studies

机译:三种具有相同席夫碱配体的建筑簇的Cu〜(II)-叠氮化物多核配合物:合成,结构,磁行为和密度泛函理论研究

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摘要

Three copper-azido complexes [Cu_4(N_3)_8(L~1)_2(MeOH)_2]_n (1), [Cu_4(N_3)_8(L~1)_2] (2), and [Cu_5(N_3)_(10)(L~1)_2]_n (3) [L~1 is the imine resulting from the condensation of pyridine-2-carboxaldehyde with 2-(2-pyridyl)ethylamine] have been synthesized using lower molar equivalents of the Schiff base ligand with Cu(NO_3)_2·3H_2O and an excess of NaN_3. Single crystal X-ray structures show that the basic unit of the complexes 1 and 2 contains CuII 4 building blocks; however, they have distinct basic and overall structures due to a small change in the bridging mode of the peripheral pair of copper atoms in the linear tetranuclear structures. Interestingly, these changes are the result of changing the solvent system (MeOH/H_2O to EtOH/H_2O) used for the synthesis, without changing the proportions of the components (metal to ligand ratio 2:1). Using even lower proportions of the ligand, another unique complex was isolated with Cu~(II)_5 building units, forming a two-dimensional complex (3). Magnetic susceptibility measurements over a wide range of temperature exhibit the presence of both antiferromagnetic (very weak) and ferromagnetic exchanges within the tetranuclear unit structures. Density functional theory calculations (using B3LYP functional, and two different basis sets) have been performed on the complexes 1 and 2 to provide a qualitative theoretical interpretation of their overall magnetic behavior.
机译:三种铜-叠氮配合物[Cu_4(N_3)_8(L〜1)_2(MeOH)_2] _n(1),[Cu_4(N_3)_8(L〜1)_2](2)和[Cu_5(N_3) _(10)(L〜1)_2] _n(3)[L〜1是吡啶-2-羧醛与2-(2-吡啶基)乙胺缩合产生的亚胺]是使用较低摩尔当量的Schiff碱配体具有Cu(NO_3)_2·3H_2O和过量的NaN_3。单晶X射线结构表明,配合物1和2的基本单元包含CuII 4结构单元;然而,由于线性四核结构中外围铜原子对的桥接方式的微小变化,它们具有独特的基本和整体结构。有趣的是,这些变化是改变用于合成的溶剂体系(MeOH / H_2O到EtOH / H_2O)的结果,而没有改变组分的比例(金属与配体的比例为2:1)。使用甚至更低比例的配体,用Cu〜(II)_5个构建单元分离出另一个独特的复合物,形成二维复合物(3)。在宽温度范围内的磁化率测量结果表明,四核单元结构中同时存在反铁磁(非常弱)和铁磁交换。对复合物1和2进行了密度泛函理论计算(使用B3LYP泛函和两个不同的基集),以提供对其整体磁性能的定性理论解释。

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