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Phenoxazinone synthase activity of two iron(III) complexes comprising the same Schiff base ligand: Biomimetic functional model and mechanistic investigation

机译:苯氧基酮合成酶活性两种铁(III)配合物,包含相同的席夫碱配体:仿生功能模型和机械调查

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摘要

A new 4,4'-bipyridine (4,4'-byp) mediated 1 D-polymeric Fe-III complex (complex 1) of Schiff base ligand H2L, a 1 : 2 condensation product of 1,2-diaminopropane and salicylaldehyde, has been synthesized. Complex 1 is structurally characterized by single crystal X-ray diffraction. A phenoxo bridged dinuclear Fe-III complex (complex 2) of analogous ligand has been synthesized also. Dioxygen activation in terms of Phenoxazinone synthase activity using o-aminophenol (OAPH) as a model substrate catalyzed by both the complexes are thoroughly investigated here. ESI-MS spectral study reveals that polynuclear complex 1 dissociates into mononuclear units while dissolve in methanol during catalytic study. The kinetic study illustrates that both the complexes have well competence towards o-aminophenol oxidation where dinuclear Fe-III species demonstrate higher activity than mononuclear intermediate species. Important finding from the mass spectral and electrochemical study provide significant information of the mechanistic pathway of the functioning phenoxazinone synthase like activity of synthesized iron complexes. (c) 2018 Elsevier B.V. All rights reserved.
机译:一种新的4,4'-bi0吡啶(4,4'-BYP)介导的1 d-聚合物Fe-III络合物(络合物1)的席夫碱配体H2L,1:2缩合产物为1,2-二氨基丙烷和水杨醛,已经合成了。复合物1在结构形式的表征通过单晶X射线衍射。也已合成了类似配体的苯氧基桥接的二核Fe-III络合物(复合物2)。在此,使用O-氨基苯酚(O-氨基苯酚(O- oaph)作为通过两种复合物催化的模型基材的苯氧嗪酮合成酶活性的二恶英激活。 ESI-MS光谱研究表明,多核络合物1在催化研究期间溶解在甲醇中的单核单元中分离成单核单位。动力学研究表明,两种复合物都具有良好的o-氨基苯酚氧化,其中金核Fe-III物种表现出比单核中间体物质更高的活性。来自质谱和电化学研究的重要发现提供了合成铁络合物的活性活性酚烷酮合成酶的机械途径的重要信息。 (c)2018年elestvier b.v.保留所有权利。

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