The functionalization of saturated hydrocarbons. Part XIX. Oxidation of alkanes by H2O2 in pyridine catalyzed by copper(II) Complexes. A Gif-Type Reaction.
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- Type
- article
- Published
- 1991-08-12
- Cited by
- 36
- References
- 18
- OpenAlex
- https://openalex.org/W2037900488
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:95410729
Keywords
Chemistry, Pyridine, Catalysis, Hydrogen peroxide, Hydrocarbon
References
- Substrate specificity of soluble methane monooxygenase. Mechanistic implications.
- Iron-hydroperoxide-induced phenylselenization of hydrocarbons (Fenton chemistry)
- Proteins Containing Oxo-Bridged Dinuclear Iron Centers: A Bioinorganic Perspective
- Functionalisation of saturated hydrocarbons. Part xvii. Reactivity of carbon-carbon double bonds
- Influence of inducers and inhibitors on the hydroxylation pattern of n‐hexane in rat liver microsomes
- Cobalt-induced activation of hydrogen peroxide for the direct ketonization of methylenic carbons [c-C6H12 .fwdarw. c-C6H10(O)], the oxidation of alcohols and aldehydes, and the dioxygenation of aryl olefins and acetylenes
- Activation of dioxygen by bis[(2-carboxy-6-carboxylato)pyridine]iron(II) for the bromination (via BrCCl3) and monooxygenation (via PhNHNHPh) of saturated hydrocarbons: reaction mimic for the methane monooxygenase proteins
- Iron(II)-induced activation of hydroperoxides for the dehydrogenation and monooxygenation of organic substrates in acetonitrile
- Fenton's reagent revisited
- Mechanism of the selective functionalization of saturated hydrocarbons by Gif systems: relationship with methane monooxygenase.
- Functionalisation of saturated hydrocarbons. Part xvi. Chemoselective oxidation
- Activation of dioxygen by bis(2,6-dicarboxylatopyridine)iron(II) for the ketonization of methylenic carbons and the dioxygenation of acetylenes, aryl olefins, and catechols: reaction mimics for dioxygenase proteins
- Iron-induced activation of hydrogen peroxide for the direct ketonization of methylenic carbon (cyclohexane .fwdarw. cyclohexanone) and the dioxygenation of acetylenes and aryl olefins
- Effect of ligand variation on the rate of cyclododecane oxidation under modified Go AggII conditions
- Selective Functionalization of Saturated Hydrocarbons by the “Gif” and “Gif-Orsay” Systems
- Iron(II)-induced activation of hydrogen peroxide to ferryl ion (FeO2+) and singlet oxygen (1O2) in acetonitrile: monoxygenations, dehydrogenations, and dioxygenations of organic substrates
- Functionalization of saturated hydrocarbons. 14. Further studies on the mechanism of Gif-type systems
- Proteins containing oxo-bridged dinuclear iron centers: a bioinorganic perspective
- Functionalisation of saturated hydrocarbons. XII: The Gif-system for direct conversion of saturated hydrocarbons into phenyl-seleno, phenyl-thio, and halogeno derivatives
Cited by
- Mild Oxidation of Cyclohexane Catalyzed by Cobalt(II) Acetate and Initiated by H2O2 in the Acetic Acid Medium
- The selective functionalisation of saturated hydrocarbons. Part 41. The use of and systems in pyridine
- The functionalisation of saturated hydrocarbons. Part XXI. The Fe(III)-catalyzed and the Cu(II)-catalyzed oxidation of saturated hydrocarbons by hydrogen peroxide: a comparative study
- The functionalization of saturated hydrocarbons. Part 24. The use of tert-butyl hydroperoxide: GoAggIV and GoAggV.
- The functionalization of saturated hydrocarbons. Part 25. Ionic substitution reactions in GoAggIV chemistry: the formation of carbon-halogen bonds
- The selective functionalization of saturated hydrocarbons: Gif chemistry
- The functionalization of saturated hydrocarbons. Part 26. Ionic substitution reactions in GoAggIV chemistry: The construction of CN, CS and CC bonds☆
- THE SELECTIVE FUNCTIONALIZATION OF SATURATED HYDROCARBONS. PART 36. STEREOSELECTIVITY STUDIES OF GIF-TYPE REACTIONS
- Copper monooxygenase models: hydroxylation reactions resulting from dioxygen activation by copper(I) complexes
- Synthesis of amino acid derivatives of 4-(1-adamantyl)benzoic acid obtained by transition metal ion catalyzed oxidation of 4-(1-adamantyl)toluene
- Synergistic effect of iron and copper oxides supported on silica in the room temperature oxidation of cyclohexane
- Aerobic oxidation of alkanes and alkenes in the presence of aldehydes catalyzed by copper salts and copper-crown ether
- Copper-dependent depolymerization of lignin in the presence of fungal metabolite, pyridine.
- The oxygenation of cyclohexane under GifIV conditions – The catalytic behaviour of iron complexes
- The functionlization of saturated hydrocarbons. Part 31. The Fe(pa)3 - and [Fe(tpa)Cl2]ClO4 - catalyzed oxidations of saturated hydrocarbons by hydrogen peroxide: A comparative mechanistic study
- Coinage metal catalyzed C-H bond functionalization of hydrocarbons.
- Synthetische Aspekte metallkatalysierter Oxidationen von Aminen und verwandte Reaktionen
- Iron supported clay as catalysts for oxidation of cyclooctane
- Mononuclear and Dinuclear Cobalt Complexes and its Dioxygen Adduct with a New 24-membered Hexaaza Macrocyclic Ligand
- Catalytic air oxidation of ambient temperature hydrocarbons
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