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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Electrochemical behaviour of mononuclear Fe(III) complexes as models for oxygenases: reactivity of Fe(II) species electrochemically formed in situ toward dioxygen
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Electrochemical behaviour of mononuclear Fe(III) complexes as models for oxygenases: reactivity of Fe(II) species electrochemically formed in situ toward dioxygen

机译:单核Fe(III)配合物作为加氧酶模型的电化学行为:原位电化学形成的Fe(II)物种对双氧的反应性

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In this paper, we report the electrochemical study of a family of mononuclear Fe-III complexes [Fe(BMPA)Cl-3] 1, [Fe(MPBMPA) Cl-3](2), [Fe(PBMPA)Cl-2](3) and [Fe(PABMPA)Cl-2](ClO4)(4), where the ligand BMPA is bis-(2-pyridylmethyl) amine, and MPBMPA, PBMPA and PABMPA are the N-methylpropanoate, N-propanoate and N-propanamide BMPA-derivatives, respectively. It was possible to verify the influence of the different ligands on the redox properties of the complexes and from this to classify the complexes according to their Lewis acidity through the Fe-III/Fe-II redox process, resulting in the following decreasing order in CH3CN solution: 4 > 2 > 1 > 3. The effect of the solvents CH3CN and DMSO on their electrochemical properties was also determined. Furthermore, we investigated the reactivity of the electrochemically-generated Fe-II complexes toward dioxygen and of the FeIII complexes toward superoxide through cyclic voltammetry. All the complexes reacted with dioxygen and superoxide in DMSO solution. Redox processes attributed to oxygenated species were observed in a more cathodic potential than those of the original compounds. According to the data, the new species Fe-II-O-2 converts itself to Fe-III-O-2(-), which presents a new redox wave attributed to the process Fe-III-O-2(-) + e(-) -> Fe-II-O-2(-). The same species Fe-III-O-2(-) is formed from the reaction of the Fe-III form of the complexes and KO2.
机译:在本文中,我们报告了一系列单核Fe-III配合物[Fe(BMPA)Cl-3] 1,[Fe(MPBMPA)Cl-3](2),[Fe(PBMPA)Cl-2 ](3)和[Fe(PABMPA)Cl-2](ClO4)(4),其中配体BMPA是双-(2-吡啶基甲基)胺,MPBMPA,PBMPA和PABMPA是N-甲基丙酸酯,N-丙酸酯和N-丙酰胺BMPA衍生物。可以验证不同配体对配合物氧化还原性能的影响,并由此通过Fe-III / Fe-II氧化还原过程根据其路易斯酸度对配合物进行分类,从而导致CH3CN的降序顺序如下溶液:4> 2> 1>3。还确定了溶剂CH3CN和DMSO对它们的电化学性能的影响。此外,我们通过循环伏安法研究了电化学生成的Fe-II配合物对双氧和FeIII配合物对超氧化物的反应性。所有络合物在DMSO溶液中均与双氧和超氧化物反应。观察到归因于氧化物质的氧化还原过程比原始化合物具有更高的阴极电位。根据数据,新物种Fe-II-O-2将自身转化为Fe-III-O-2(-),这会产生新的氧化还原波,这归因于Fe-III-O-2(-)+ e(-)-> Fe-II-O-2(-)。 Fe-III-O-2(-)是由配合物的Fe-III形式与KO2反应形成的。

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