Application of novel metallocomplexes for mimicking of cytochrome P450: Analysis of product distribution for 1-hexene as a substrate

Graphic While the most catalysts applying for mimicking of oxygenation function of cytochrome P450 rely on the metalloporphyrins, we present here novel approach based on M n+ metallocomplexes of novel ligands: arylmethyl substituted bis-β-aminoketones. The efficacy of catalyst for 1-hexene oxygenati...

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Veröffentlicht in:Journal of molecular catalysis. A, Chemical Chemical, 2004-09, Vol.219 (1), p.21-27
Hauptverfasser: Pulkkinen, Juha, Zachar, Pavel, Borek, Vojtech Albert, Laatikainen, Reino, Kral, Vladimir
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container_end_page 27
container_issue 1
container_start_page 21
container_title Journal of molecular catalysis. A, Chemical
container_volume 219
creator Pulkkinen, Juha
Zachar, Pavel
Borek, Vojtech Albert
Laatikainen, Reino
Kral, Vladimir
description Graphic While the most catalysts applying for mimicking of oxygenation function of cytochrome P450 rely on the metalloporphyrins, we present here novel approach based on M n+ metallocomplexes of novel ligands: arylmethyl substituted bis-β-aminoketones. The efficacy of catalyst for 1-hexene oxygenation was tested as function of M n+ , ligand type and reaction conditions. Our results revealed that the best performance is for Co(II) metallocomplexes of ligand N, N′-ethylenebis[4-amino-1,5-di-(2-naphthyl)]pent-3-en-2-one are the most efficient for conversion of 1-hexene to oxygenation products. Analysis of product distribution was performed with GC–MS analysis, the mild conditions of analysis allowed to detect primary products of oxygenation reaction.
doi_str_mv 10.1016/j.molcata.2004.04.030
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subjects Catalysis
Chemistry
Cytochrome P450
Enzyme mimick
Exact sciences and technology
General and physical chemistry
Metallocomplexes
Oxygenation
Product distribution
Theory of reactions, general kinetics. Catalysis. Nomenclature, chemical documentation, computer chemistry
title Application of novel metallocomplexes for mimicking of cytochrome P450: Analysis of product distribution for 1-hexene as a substrate
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