首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Crystal structures and polyphenol oxidase activities of dinuclear copper(II) and cobalt(II) complexes with N,N,N ',N '-tetrakis (2 '-benzimidazolylmethyl)-1,4-diethylene amino glycol ether (EGTB)
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Crystal structures and polyphenol oxidase activities of dinuclear copper(II) and cobalt(II) complexes with N,N,N ',N '-tetrakis (2 '-benzimidazolylmethyl)-1,4-diethylene amino glycol ether (EGTB)

机译:N,N,N',N'-四(2'-苯并咪唑基甲基)-1,4-二亚乙基氨基乙二醇醚(EGTB)的双核铜(II)和钴(II)配合物的晶体结构和多酚氧化酶活性

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Dinuclear complexes [Cu-2(EGTB)(H2O)(2)(ClO4)(2)](ClO4)(2) (.) 6H(2)O (I) and [Co-2(EGTB)Cl-2](ClO4)(2) (.) 5H(2)O (II) [EGTB = N,N,N',N'-tetrakis(2'-benzimidazolylmethyl)-1,4-diethylene amino glycol ether] have been synthesized and characterized. In the crystal structure of complex 1, the coordination geometry of each copper(II) atom is distorted octahedral, which consists of three Cu-N bonds and a Cu-O(coordinated water) bond (1.975(2) angstrom) in the basal plane, as well as axial weak bonds Cu-O(EGTB ether oxygen) (2.4070(19) angstrom) and Cu-O(perchlorate) (2.610(8) angstrom). The two Cu-N(benzimidazole, bzim) bond lengths are 1.961(2) and 1.964(2) angstrom, and the Cu-N(amino) distance is 2.083(2) angstrom. Each cobalt(II) center of complex II has a trigonal bipyramidal coordination, the average bond lengths of Co-N(bzim), Co-N(arnino), Co-O(ether) and Co-Cl are 2.0325, 2.2844, 2.0845 and 2.2937 A, respectively. The internuclear distances of complex I and II are 8.038(8) and 5.7138(10) angstrom, respectively. Polyphenol oxidase activities toward pyrogallol and catechol have been studied. Their kinetics obey the Michaelis-Menten equation. The turnover numbers of the complexes toward pyrogallol are 1.92(I) and 2.42(II) min(-1), and 0.018(I) and 0.117(II) min(-1) for catechol. The Michaelis constants at pH 8.0 are 0.43e - 3(I), 1.34e - 3(II) and 2.15e - 3(I), 2.77e - 3(II) toward pyrogallol and catechol, respectively. By a comparison of the kinetic data, it is found that pyrogallol oxidation is easier than catechol oxidation, and the catalytic activities of complex II are higher than those of complex I, and moreover they increase with increasing pH values. Electrospray ionization mass spectra (ESI-MS) show that pyrogallol is first oxidized to quinone, which is further condensed to give a purpurogallin and its dimer (m/z = 436), associating by hydrogen bonds. The catechol oxidation is similar to pyrogallol: first it results in quinone, then quinone is cyclo-opened to produce 2-hydroxymuconic aldehyde, which is followed by condensation with catechol to form a purpurogallinoid, as well as being cleft to give some small molecular ion fragments due to McLafferty rearrangement. (c) 2005 Elsevier Ltd. All rights reserved.
机译:双核络合物[Cu-2(EGTB)(H2O)(2)(ClO4)(2)](ClO4)(2)(。)6H(2)O(I)和[Co-2(EGTB)Cl-2 ](ClO4)(2)(。)5H(2)O(II)[EGTB = N,N,N',N'-四(2'-苯并咪唑基甲基)-1,4-二亚乙基氨基乙二醇醚]综合和表征。在配合物1的晶体结构中,每个铜(II)原子的配位几何是扭曲的八面体,它由三个Cu-N键和一个基底部的Cu-O(配位水)键(1.975(2)埃)组成平面以及轴向弱键Cu-O(EGTB醚氧)(2.4070(19)埃)和Cu-O(高氯酸盐)(2.610(8)埃)。两个Cu-N(苯并咪唑,bzim)键长分别为1.961(2)和1.964(2)埃,而Cu-N(氨基)距离为2.083(2)埃。络合物II的每个钴(II)中心均具有三角双锥体配位,Co-N(bzim),Co-N(阿尼诺),Co-O(醚)和Co-Cl的平均键长为2.0325、2.2844、2.0845和2.2937A。复合物I和II的核间距分别为8.038(8)和5.7138(10)埃。研究了对苯三酚和邻苯二酚的多酚氧化酶活性。它们的动力学服从Michaelis-Menten方程。邻苯二酚的复合物的转换数是邻苯二酚的1.92(I)和2.42(II)min(-1),以及邻苯二酚的0.018(I)和0.117(II)min(-1)。 pH 8.0时,对邻苯三酚和邻苯二酚的米氏常数分别为0.43e-3(I),1.34e-3(II)和2.15e-3(I),2.77e-3(II)。通过动力学数据的比较,发现邻苯三酚氧化比邻苯二酚氧化更容易,并且配合物II的催化活性高于配合物I的催化活性,而且它们随着pH值的增加而增加。电喷雾电离质谱(ESI-MS)显示,邻苯三酚首先被氧化为醌,然后进一步缩合生成紫嘌呤醇及其二聚体(m / z = 436),并通过氢键缔合。邻苯二酚的氧化类似于邻苯三酚:首先生成醌,然后将醌环打开以生成2-羟基粘康醛,然后与邻苯二酚缩合形成紫杉醇,然后裂开产生一些小分子离子McLafferty重排导致碎片。 (c)2005 Elsevier Ltd.保留所有权利。

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