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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >A novel series of heterotrinuclear complexes involving imidazolate bridging Schiff's base ligands. Synthesis, crystal structure, and magnetic properties
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A novel series of heterotrinuclear complexes involving imidazolate bridging Schiff's base ligands. Synthesis, crystal structure, and magnetic properties

机译:一系列新的异三核配合物,涉及咪唑酸盐桥接席夫氏碱配体。合成,晶体结构和磁性

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Mononuclear copper(II) complexes with an unsymmetrical tridentate Schiffs base involving two imidazole moieties, [Cu(HL)(H2O)]ClO4)(2) (1) and [Cu(L)(hfac)] (3), have been prepared and characterized, where HL stands for the 1:1 condensation product of 2-imidazolecarboxaldehyde and histamine. Under basic conditions, 1 easily undergoes a self-assembly process affording an insoluble imidazolate-bridged polymeric species ([Cu(L))(H2O)] (ClO4))(n) (2). By using 1 and 3 as "ligand complexes" toward M(hfac)(2) (hfac = hexafluoroacetylacetonate) a series of imidazolate-bridged heterometal trinuclear complexes with the formula [Cu(L)(hfac)M(hfac)(2)Cu(hfac)(L)] (M = Zn-II, Cu-II, Ni-II, Mn-II) (4-7) can be prepared. The structures of these complexes have been solved by X-ray crystallographic methods. All the trinuclear complexes are isostructural and consist of trinuclear molecules with a V-shaped conformation, which are formed by two CuL(hfac) "ligands" bonded through imidazolate bridges to the central metal in cis-position. The ligand environment about the central metal atom can be described as a distorted octahedron, with the nitrogen atoms from the imidazolate groups and two oxygen atoms of the hfac ligands in the equatorial plane and the remaining two oxygen atoms from the hfac ligands filling the axial positions at longer distances. The coordination geometry of the copper(II) ion is very close to a square pyramid with one oxygen atom from the hfac in a more distant axial position. The magnetic susceptibility data (2-300 K) revealed antiferromagnetic interactions between copper(TI) ions and the central metal. The magnetic susceptibility data were quantitatively analyzed using the theoretical expressions deduced from the spin Hamiltonian for a symmetrical three-spin system H = -J(CuM)(S-Cul. S-M + SM .SCu2) to give the coupling parameters J(CuCu) = -60.6 cm(-1), J(CuNi) = -21.6 cm(-l), and J(CuMn) = -3.2 cm-l. These magnetic behaviors are discussed on the basis of the localized-orbital model of exchange interactions. [References: 34]
机译:具有不对称三齿Schiffs碱的单核铜(II)配合物涉及两个咪唑部分[Cu(HL)(H2O)] ClO4)(2)(1)和[Cu(L)(hfac)](3)。 HL代表2-咪唑甲醛与组胺的1:1缩合产物。在碱性条件下,1容易经历自组装过程,从而获得不溶性咪唑基桥连的聚合物([Cu(L))(H2O)](ClO4))(n)(2)。通过使用1和3作为对M(hfac)(2)(hfac =六氟乙酰丙酮化物)的“配体配合物”,一系列具有式[Cu(L)(hfac)M(hfac)(2)的咪唑化物桥联的杂金属三核配合物可以制备Cu(hfac)(L)](M = Zn-II,Cu-II,Ni-II,Mn-II)(4-7)。这些配合物的结构已经通过X射线晶体学方法解决。所有的三核复合物都是同构的,由具有V形构象的三核分子组成,这些分子由两个通过咪唑酸酯桥键连接到中心金属的顺式位置的CuL(hfac)“配体”形成。围绕中心金属原子的配体环境可以描述为扭曲的八面体,其中咪唑基团的氮原子和hfac配体的两个氧原子在赤道平面内,hfac配体的其余两个氧原子填充轴向位置在更长的距离。铜(II)离子的配位几何形状非常接近四角锥,其中来自hfac的一个氧原子位于更远的轴向位置。磁化率数据(2-300 K)揭示了铜(TI)离子与中心金属之间的反铁磁相互作用。使用自旋哈密顿量推论的对称三自旋系统H = -J(CuM)(S-Cul。SM + SM .SCu2)的理论表达式对磁化率数据进行定量分析,以给出耦合参数J(CuCu) = -60.6cm(-1),J(CuNi)=-21.6cm(-1),和J(CuMn)=-3.2cm-1。在交换相互作用的局部轨道模型的基础上讨论了这些磁行为。 [参考:34]

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