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三联吡啶环番氮杂大环的咪唑盐桥联铜(II)-铜(II)和铜(II)-锌(II)配合物:溶液和固态研究

Imidazolate bridged Cu(II)-Cu(II) and Cu(II)-Zn(II) complexes of a terpyridinophane azamacrocycle: a solution and solid state study.

作者信息

Verdejo Begoña, Blasco Salvador, García-España Enrique, Lloret Francisco, Gaviña Pablo, Soriano Conxa, Tatay Sergio, Jiménez Hermas R, Doménech Antonio, Latorre Julio

机构信息

Departament de Química Inorgànica, Institut de Ciència Molecular (ICMOL), Universitat de València. Edificio de Institutos de Paterna, Apartado de Correos 22085, 46071 Valencia, Spain.

出版信息

Dalton Trans. 2007 Nov 7(41):4726-37. doi: 10.1039/b708186c. Epub 2007 Aug 30.

Abstract

The dinuclear Cu2+ and Zn2+ as well as the mixed Cu2+-Zn2+ complexes of a 5,5''-pentaazaterpyridinophane ligand (L) are able to incorporate imidazolate (Im-) as a bridging ligand. The crystal structure of Cu(2)L(Im)(Br)(H2O)(2).3H2O (1) shows one copper coordinated by the three pyridine nitrogens of the terpyridine unit, one nitrogen of the imidazolate bridge (Im-) and one bromide anion occupying the axial position of a distorted square pyramid. The second copper atom is coordinated by the remaining imidazolate nitrogen, the three secondary nitrogens at the centre of the polyamine bridge and one water molecule that occupies the axial position. Magnetic measurements have been performed in the 2.0-300.0 K temperature range. Experimental data could be satisfactorily reproduced by using an isotropic exchange model H = -JS(1)S(2) with J = -52.3 cm(-1) and g = 2.09. Potentiometric studies have provided details of the speciation and stability constants for the mixed Cu2+-L-HIm, Zn2+-L-HIm (HIm = imidazole) and Cu2+-Zn2+-L-HIm systems. The apparent stability constant obtained at pH = 9 for the addition of imidazole to the dinuclear Cu2+ complexes is one of the highest so far reported (log K = 7.5). UV-Vis spectroscopy and paramagnetic NMR data show that imidazole coordinates to the Cu2+ ions as a bridging imidazolate ligand from pH 5 to 10. Electrochemical reduction of the Cu2+-Zn2+-L complex occurs in two successive one-electron per copper ion quasi-reversible steps. The formal potential of the Cu2+-Zn2+-L/Cu+-Zn2+-L couple is close to that of SOD. The IC50 values measured at pH 7.8 by means of the nitro blue tetrazolium method show significant SOD activity for the dinuclear Cu2+ complexes (IC50 = 2.5 microM) and moderate activity for the Cu2+-Zn2+ mixed systems (IC50 = 30 microM).

摘要

5,5''-五氮杂三联吡啶环番配体(L)的双核Cu2+和Zn2+以及混合Cu2+-Zn2+配合物能够结合咪唑盐(Im-)作为桥连配体。Cu(2)L(Im)(Br)(H2O)(2).3H2O(1)的晶体结构表明,一个铜原子由三联吡啶单元的三个吡啶氮原子、咪唑盐桥(Im-)的一个氮原子和一个占据扭曲四方锥轴向位置的溴阴离子配位。第二个铜原子由剩余的咪唑盐氮原子、多胺桥中心的三个仲氮原子和一个占据轴向位置的水分子配位。在2.0 - 300.0 K温度范围内进行了磁性测量。使用各向同性交换模型H = -JS(1)S(2),其中J = -52.3 cm(-1),g = 2.09,实验数据能够得到满意的重现。电位滴定研究提供了混合Cu2+-L-HIm、Zn2+-L-HIm(HIm = 咪唑)和Cu2+-Zn2+-L-HIm体系的物种形成和稳定常数的详细信息。在pH = 9时,向双核Cu2+配合物中添加咪唑得到的表观稳定常数是迄今为止报道的最高值之一(log K = 7.5)。紫外-可见光谱和顺磁核磁共振数据表明,从pH 5到10,咪唑以桥连咪唑盐配体的形式与Cu2+离子配位。Cu2+-Zn2+-L配合物的电化学还原在每铜离子连续两个单电子的准可逆步骤中发生。Cu2+-Zn2+-L/Cu+-Zn2+-L电对的形式电位接近超氧化物歧化酶(SOD)的电位。通过硝基蓝四唑法在pH 7.8下测得的IC50值表明,双核Cu2+配合物具有显著的SOD活性(IC50 = 2.5 microM),而Cu2+-Zn2+混合体系具有中等活性(IC50 = 30 microM)。

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