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具有 2-苄氨基乙醇的新型单核和四核铜(II)配合物的苯并恶嗪酮合酶样催化活性。

Phenoxazinone synthase-like catalytic activity of novel mono- and tetranuclear copper(ii) complexes with 2-benzylaminoethanol.

机构信息

Centro de Química Estrutural, Instituto Superior Técnico, Universidade de Lisboa, Av. Rovisco Pais, 1049-001 Lisboa, Portugal.

出版信息

Dalton Trans. 2020 Apr 15;49(15):4710-4724. doi: 10.1039/d0dt00222d.

DOI:10.1039/d0dt00222d
PMID:32207490
Abstract

Three novel coordination compounds, [Cu(ca)2(Hbae)2] (1), [Cu(va)2(Hbae)2] (2) and [Cu4(va)4(bae)4]·H2O (3), have been prepared by self-assembly reactions of copper(ii) chloride (1 and 2) or tetrafluoroborate (3) and CH3OH (1 and 3) or CH3CN (2) solution of 2-benzylaminoethanol (Hbae) and cinnamic (Hca, 1) or valeric (Hva, 2 and 3) acid. Crystallographic analysis revealed that both 1 and 2 have mononuclear crystal structures, wherein the complex molecules are H-bonded forming extended supramolecular chains. The tetranuclear structure of 3 is based on the {Cu4(μ3-O)4} core, wherein the metal atoms are bound together by μ3 oxygen bridges from 2-benzylaminoethanol forming an overall cubane-like configuration. The strong hydrogen bonding in 1-3 leads to the joining of the neighbouring molecules into 1D chains. Concentration-dependent ESI-MS studies disclosed the equilibria between di-, tri- and tetranuclear species in solutions of 1-3. All three compounds act as catalysts for the aerobic oxidation of o-aminophenol to the phenoxazinone chromophore (phenoxazinone synthase-like activity), with the maximum reaction rates of 4.0 × 10-7, 2.5 × 10-7 and 2.1 × 10-7 M s-1 for 1, 2 and 3, respectively, supported by the quantitative yield of the product after 24 h. The dependence of the reaction rates on catalyst concentrations is evidence of reaction orders higher than one relative to the catalyst. Kinetic and ESI-MS data allowed us to assume that the tetranuclear species, originating from 1, 2 and 3 in solution, possess considerably higher activity than the species of lower nuclearity. Mechanistic and isotopic 18O-labelling experiments suggested that o-aminophenol coordinates to CuII species with the formation of reactive intermediates, while the oxygen from 18O2 is not incorporated into the phenoxazinone chromophore.

摘要

三种新型配合物,[Cu(ca)2(Hbae)2](1),[Cu(va)2(Hbae)2](2)和[Cu4(va)4(bae)4]·H2O(3),通过铜(ii)氯化物(1 和 2)或四氟硼酸盐(3)与甲醇(1 和 3)或 CH3CN(2)溶液的自组装反应合成。2-苄基氨基乙醇(Hbae)和肉桂酸(Hca,1)或缬草酸(Hva,2 和 3)酸。晶体结构分析表明,1 和 2 都具有单核晶体结构,其中配合物分子通过氢键形成扩展的超分子链。3 的四核结构基于{Cu4(μ3-O)4}核心,其中金属原子通过来自 2-苄基氨基乙醇的μ3氧桥结合在一起,形成整体立方烷状结构。1-3 中的氢键很强,导致相邻分子连接成 1D 链。浓度依赖性 ESI-MS 研究揭示了 1-3 溶液中二、三、四核配合物之间的平衡。这三种化合物都能作为邻氨基酚有氧氧化为苯并恶嗪酮生色团(苯并恶嗪酮合酶样活性)的催化剂,最大反应速率分别为 4.0×10-7、2.5×10-7 和 2.1×10-7 M s-1,产物的定量产率为 24 小时后。反应速率对催化剂浓度的依赖性表明,相对于催化剂,反应级数高于一。动力学和 ESI-MS 数据表明,溶液中的四核配合物(来自 1、2 和 3)的活性明显高于低核配合物。机理和同位素 18O 标记实验表明,邻氨基酚与 CuII 物种配位形成反应中间体,而 18O2 中的氧未掺入苯并恶嗪酮生色团中。

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