首页> 外文期刊>Journal of Molecular Structure >Synthesis, characterization, and tyrosinase biomimetic catalytic activity of copper(II) complexes with schiff base ligands derived from α-diketones with 2-methyl-3-amino-(3H)-quinazolin-4-one
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Synthesis, characterization, and tyrosinase biomimetic catalytic activity of copper(II) complexes with schiff base ligands derived from α-diketones with 2-methyl-3-amino-(3H)-quinazolin-4-one

机译:具有席夫碱配体的席夫碱配体的铜(II)配合物的合成,表征和酪氨酸酶的仿生活性,席夫碱配体由α-二酮与2-甲基-3-氨基-(3H)-喹唑啉-4-

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摘要

A template condensation of α-diketones (biacetyl, benzile and 2,3-pentanedione) with 2-methyl-3-amino-(3H)-quinazolin-4-one (AMQ) in the presence of CuX_2 (X = Cl-, Br-, NO3- or ClO4-) resulted in the formation of tetradentate Schiff base copper(II) complexes of the type [CuLX]X and [CuL]X_2. Structural characterization of the complex species was achieved by several physicochemical methods, namely elemental analysis, electronic spectra, IR, ESR, molar conductivity, thermal analysis (TAG & DTG), and magnetic moment measurements. The stereochemistry, the nature of the metal chelates, and the catalytic reactivity are markedly dependent upon the type of counter anions and the ligand substituent within the carbonyl moiety. A square planar monomeric structure is proposed for the perchlorate, nitrate, and bromide complexes, in which the counter anions are loosely bonded to copper(II) ion. For the chloride complexes, the molar conductivities and the spectral data indicated that they have square-pyramidal environments around copper(II) center. The reported copper(II) complexes exhibit promising tyrosinase catalytic activity towards the hydroxylation of phenol followed by the aerobic oxidation of the resulting catechol. A linear correlation almost exists between the catalytic reactivity and the Lewis-acidity of the central copper(II) ion created by the donating properties of the parent ligand. The steric considerations could be accounted to clarify the difference in the catalytic activity of these functional models.
机译:在CuX_2(X = Cl-, Br-,NO3-或ClO4-)形成[CuLX] X和[CuL] X_2类型的四齿席夫碱铜(II)配合物。复杂物质的结构表征是通过几种物理化学方法实现的,即元素分析,电子光谱,IR,ESR,摩尔电导率,热分析(TAG和DTG)以及磁矩测量。立体化学,金属螯合物的性质和催化反应性明显取决于抗衡阴离子的类型和羰基部分内的配体取代基。对于高氯酸盐,硝酸盐和溴化物的络合物,提出了一种方形的平面单体结构,其中的抗衡阴离子松散地结合在铜离子上。对于氯化物络合物,摩尔电导率和光谱数据表明它们在铜(II)中心周围具有方锥状环境。报道的铜(II)配合物对苯酚的羟基化表现出有希望的酪氨酸酶催化活性,然后对产生的邻苯二酚进行好氧氧化。由母体配体的给体性质产生的中心铜(II)离子的催化反应性和路易斯酸度之间几乎存在线性关系。可以考虑空间位点,以澄清这些功能模型的催化活性的差异。

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