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具有[Mn2(μ-OAc)(μ-OR)2]3+核心的五齿(N2O3)席夫碱配体的新型二价锰(III)配合物:H2O2歧化反应的合成、表征及机理研究

New dimanganese(III) complexes of pentadentate (N2O3) Schiff base ligands with the [Mn2(mu-OAc)(mu-OR)2]3+ core: synthesis, characterization and mechanistic studies of H2O2 disproportionation.

作者信息

Biava Hernán, Palopoli Claudia, Shova Sergiu, De Gaudio Mónica, Daier Verónica, González-Sierra Manuel, Tuchagues Jean-Pierre, Signorella Sandra

机构信息

Departamento de Química, Facultad de Ciencias Bioquímicas y Farmacéuticas, UNR, Suipacha 531, 2000 Rosario, Argentina.

出版信息

J Inorg Biochem. 2006 Oct;100(10):1660-71. doi: 10.1016/j.jinorgbio.2006.05.016. Epub 2006 Jun 13.

Abstract

Two new diMn(III) complexes [Mn(2)(III)L(1)(mu-AcO)(mu-MeO)(methanol)(2)]Br (1) and [Mn(2)(III)L(2)(mu-AcO)(mu-MeO)(methanol)(ClO(4))] (2) (L(1)H(3)=1,5-bis(2-hydroxybenzophenylideneamino)pentan-3-ol; L(2)H(3)=1,5-bis(2-hydroxynaphtylideneamino)pentan-3-ol) were synthesized and structurally characterized. Structural studies evidence that these complexes have a bis(mu-alkoxo)(mu-carboxylato) triply bridged diMn(III) core in the solid state and in solution, with two substitution-labile sites--one on each Mn ion--in cis-position. The two complexes show catalytic activity toward disproportionation of H(2)O(2), with saturation kinetics on [H(2)O(2)], in methanol and dimethyl formamide at 25 degrees C. Spectroscopic monitoring of the H(2)O(2) disproportionation reaction suggests that (i) complexes 1 and 2 dismutate H(2)O(2) by a mechanism involving redox cycling between Mn(2)(III) and Mn(2)(IV), (ii) the complexes retain the dinuclearity during catalysis, (iii) the active form of the catalyst contains bound acetate, and (iv) protons favors the formation of inactive Mn(II) species. Comparison to other dimanganese complexes of the same family shows that the rate of catalase reaction is not critically dependent on the redox potential of the catalyst, that substitution of phenolate by naphtolate in the Schiff base ligand favors formation of the catalyst-substrate adduct, and that, in the non-protic solvent, the bulkier substituent at the imine proton position hampers the binding to the substrate.

摘要

合成并表征了两种新型二价锰(III)配合物[Mn₂(III)L₁(μ - AcO)(μ - MeO)(甲醇)₂]Br (1)和[Mn₂(III)L₂(μ - AcO)(μ - MeO)(甲醇)(ClO₄)] (2)(L₁H₃ = 1,5 - 双(2 - 羟基苯亚苄基氨基)戊 - 3 - 醇;L₂H₃ = 1,5 - 双(2 - 羟基萘亚苄基氨基)戊 - 3 - 醇)。结构研究表明,这些配合物在固态和溶液中都具有双(μ - 烷氧基)(μ - 羧基)三重桥连的二价锰(III)核心,在顺式位置上有两个取代不稳定位点——每个锰离子上一个。这两种配合物在25℃下于甲醇和二甲基甲酰胺中对H₂O₂的歧化反应表现出催化活性,对[H₂O₂]呈饱和动力学。H₂O₂歧化反应的光谱监测表明:(i)配合物1和2通过涉及Mn₂(III)和Mn₂(IV)之间氧化还原循环的机制使H₂O₂发生歧化反应;(ii)配合物在催化过程中保持双核性;(iii)催化剂的活性形式含有结合的乙酸根;(iv)质子有利于形成无活性的Mn(II)物种。与同一家族的其他二锰配合物相比表明,过氧化氢酶反应速率并不严格依赖于催化剂的氧化还原电位,席夫碱配体中酚盐被萘酚盐取代有利于催化剂 - 底物加合物的形成,并且在非质子溶剂中,亚胺质子位置上体积较大的取代基会阻碍与底物的结合。

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