The Journal of Organic Chemistry · 1997 · 113 citations · 24 references
Advanced Oxidation ProcessBioorganic ChemistryEngineeringPotassium MonopersulfateOrganic ChemistryVitamin KChemistryRedox BiologyMetalloporphyrin-catalyzed OxidationChemical EngineeringBioorganometallic ChemistryRedox ChemistryBiochemistryAqueous SolutionCatalysisOxygen Reduction ReactionNatural SciencesElectrosynthesisDeoxygenationRedox Tautomerism
The metalloporphyrin-catalyzed oxidation of 2-methynaphthalene (1) by potassium monopersulfate produced mainly two naphthoquinones: 2-methyl-1,4-naphthoquinone (2) (menadione or vitamin K(3)) and 6-methyl-1,4-naphthoquinone (3). In aqueous solution and at room temperature in the presence of 5 mol % of the water-soluble metalloporphyrins MnTPPS or FeTMPS, 2-methylnaphthalene was quantitatively oxidized to quinones 2 and 3. Based on experiments performed in(18)O-labeled water and according to the "redox tautomerism" mechanism previously described for such catalysts, the oxidation to quinones is proposed to be mainly due to a cytochrome P-450-type oxygenation reaction (oxygen atom transfer), rather than a peroxidase-type oxidation (electron transfer).
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Donald M. Jerina, John W. Daly, Bernhard Witkop et al. · Journal of the American Chemical Society · 1968 · 225 citations
Chemical Analysis, Altmetric Attention Score, Organic Chemistry +21
Jean Bernadou, Anne-Sylvie Fabiano, Anne Robert et al. · Journal of the American Chemical Society · 1994 · 174 citations
Oxygen Reduction Reaction, Inorganic Chemistry, Chemical Engineering +12