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由单核铜(II)配合物与2-[((咪唑-2-基亚甲基)氨基)乙基]吡啶(HL)制备咪唑桥连线性三核化合物的合理设计:[Cu(L)(hfac)M(hfac)2Cu(hfac)(L)](M = ZnII、CuII、MnII)的合成、结构及磁性质

A rational design for imidazolate-bridged linear trinuclear compounds from mononuclear copper(II) complexes with 2-[((imidazol-2-ylmethylidene)amino)ethyl]pyridine (HL): syntheses, structures, and magnetic properties of [Cu(L)(hfac)M(hfac)2Cu(hfac)(L)] (M = ZnII, CuII, MnII).

作者信息

Colacio E, Ghazi M, Kivekäs R, Klinga M, Lloret F, Moreno J M

机构信息

Departamento de Química Inorgánica, Facultad de Ciencias, Universidad de Granda, Spain.

出版信息

Inorg Chem. 2000 Jun 26;39(13):2770-6. doi: 10.1021/ic991401m.

Abstract

Two mononuclear copper(II) complexes with the unsymmetrical tridentate ligand 2-[((imidazol-2-ylmethylidene)amino)ethyl]pyridine (HL), Cu(HL)(H2O)2.2H2O (1) and [Cu(HL)Cl2] (2), have been prepared and characterized. The X-ray analysis of 2 revealed that the copper(II) ion assumes a pentacoordinated square pyramidal geometry with an N3Cl2 donor set. When 1 and 2 are treated with an equimolecular amount of potassium hydroxide, the deprotonation of the imidazole moiety promotes a self-assembled process, by coordination of the imidazolate nitrogen atom to a Cu(II) center of an adjacent unit, leading to the polynuclear complexes [Cu(L)(H2O)]n (3) and [[Cu(L)Cl].2H2O]n (4). Variable-temperature magnetic data are well reproduced for one-dimensional infinite regular chain systems with J = -60.3 cm(-1) and g = 2.02 for 3 and J = -69.5 cm(-1) and g = 2.06, for 4. When 1 is used as a "ligand complex" for [M(hfac)2] (M = Cu(II), Ni(II), Mn(II), Zn(II)) in a basic medium, only the imidazolate-bridged trinuclear complexes [Cu(L)(hfac)M(hfac)2Cu(hfac)(L)] (M = Zn(II), Cu(II)) (5, 6) can be isolated. Nevertheless, the analogous complex containing Mn(II) as the central metal (7) can be prepared from the precursor [Cu(HL)Cl2] (2). All the trinuclear complexes are isostructural. The structures of 5 and 6 have been solved by X-ray crystallographic methods and consist of well-isolated molecules with Ci symmetry, the center of symmetry being located at the central metal. Thus, the copper(II) fragments are in trans positions, leading to a linear conformation. The magnetic susceptibility data (2-300 K), which reveal the occurrence of antiferromagnetic interactions between copper(II) ions and the central metal, were quantitatively analyzed for symmetrical three-spin systems to give the coupling parameters JCuCu = -37.2 and JCuMn = -3.7 cm(-1) with D = +/-0.4 cm(-1) for 6 and 7, respectively. These magnetic behaviors are compared with those for analogous systems and discussed on the basis of a localized-orbital model of exchange interactions.

摘要

制备并表征了两种含有不对称三齿配体2-[((咪唑-2-基亚甲基)氨基)乙基]吡啶(HL)的单核铜(II)配合物,即Cu(HL)(H₂O)₂·2H₂O (1)和[Cu(HL)Cl₂] (2)。对2的X射线分析表明,铜(II)离子呈现五配位的四方锥几何构型,配体为N₃Cl₂。当1和2用等摩尔量的氢氧化钾处理时,咪唑部分的去质子化通过咪唑氮原子与相邻单元的Cu(II)中心配位促进了自组装过程,生成多核配合物[Cu(L)(H₂O)]ₙ (3)和[[Cu(L)Cl]·2H₂O]ₙ (4)。对于一维无限规则链状体系,变温磁性数据得到了很好的拟合,3的J = -60.3 cm⁻¹,g = 2.02,4的J = -69.5 cm⁻¹,g = 2.06。当1在碱性介质中用作[M(hfac)₂] (M = Cu(II)、Ni(II)、Mn(II)、Zn(II))的“配体配合物”时,仅能分离出咪唑桥连的三核配合物[Cu(L)(hfac)M(hfac)₂Cu(hfac)(L)] (M = Zn(II)、Cu(II)) (5, 6)。然而,含有Mn(II)作为中心金属的类似配合物(7)可由前体[Cu(HL)Cl₂] (2)制备。所有三核配合物都是同构的。5和6的结构已通过X射线晶体学方法解析,由具有Ci对称性的孤立分子组成,对称中心位于中心金属处。因此,铜(II)片段处于反式位置,形成线性构象。对对称三自旋体系的磁化率数据(2 - 300 K)进行了定量分析,该数据揭示了铜(II)离子与中心金属之间存在反铁磁相互作用,对于6和7,分别得到耦合参数JCuCu = -37.2和JCuMn = -3.7 cm⁻¹,D = ±0.4 cm⁻¹。将这些磁性行为与类似体系的进行了比较,并基于交换相互作用的定域轨道模型进行了讨论。

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