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Syntheses, crystallographic characterization, catecholase activity and magnetic properties of three novel aqua bridged dinuclear nickel(II) complexes

机译:三种新型水桥双核镍(II)配合物的合成,晶体学表征,儿茶酚酶活性和磁性

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摘要

Three novel μ_2-aqua bridged dinuclear Ni(II) complexes, [Ni_2(HL~1)_4(H_2O)] (1), [Ni_2(HL~2)_4(H_2O)] (2) and [Ni_2(HL~3)_4(H_2O)] (3) have been synthesized using Schiff base ligands derived from 5-amino-1-pentanol and salicylaldehyde (H_2L~1), 5-bromo salicylaldehyde (H_2L~2) and 3-methoxy salicylaldehyde (H_2L~3), respectively. They are characterized by a variety of physical techniques including elemental analysis, infrared and UV–Vis spectroscopy, NMR, cyclic voltammetry, variable temperature magnetic measurements and single crystal X-ray diffraction. X-ray crystallographic analysis reveals that all the three complexes possess distorted octahedral environment with a bridging aqua ligand. Complexes 1 and 3 exhibit 3D supramolecular architecture whereas 2 demonstrates a 2D netlike arrangement along ab plane. Catecholase activity of the dinuclear Ni(II) systems are investigated using 3,5-di-tert-butylcatechol as the substrate. The complexes are efficient catalysts with turnover numbers 1.87 × 10~4, 1.79 × 10~4 and 1.38 × 10~4 h~(-1) for 1, 2 and 3, respectively. The probable structures of the intermediates formed during the process are proposed on the basis of kinetic and spectral analyses. The magnetic data disclose that weak ferromagnetic couplings are transmitted between the metal centers and the magnetic properties are correlated with the structural features around the Ni(II) centers.
机译:三种新型的μ_2-aqua桥联双核Ni(II)络合物[Ni_2(HL〜1)_4(H_2O)](1),[Ni_2(HL〜2)_4(H_2O)](2)和[Ni_2(HL〜 3)_4(H_2O)](3)是使用衍生自5-氨基-1-戊醇和水杨醛(H_2L〜1),5-溴水杨醛(H_2L〜2)和3-甲氧基水杨醛(H_2L)的席夫碱配体合成的〜3)。它们的特征在于多种物理技术,包括元素分析,红外和UV-Vis光谱,NMR,循环伏安法,可变温度磁测量和单晶X射线衍射。 X射线晶体学分析表明,所有三个配合物都具有扭曲的八面体环境,具有桥接的水配体。配合物1和3显示3D超分子结构,而配合物2则显示沿ab平面的2D网状排列。使用3,5-二叔丁基邻苯二酚作为底物研究了双核Ni(II)系统的儿茶酚酶活性。该配合物是有效的催化剂,其1、2和3的周转数分别为1.87×10〜4、1.79×10〜4和1.38×10〜4h〜(-1)。在动力学和光谱分析的基础上,提出了该过程中形成的中间体的可能结构。磁数据表明,弱的铁磁耦合在金属中心之间传递,并且磁性能与Ni(II)中心周围的结构特征相关。

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