Bulletin of the Chemical Society of Japan · 1997 · 199 citations · 32 references
Phosphonic AcidChemical EngineeringAdvanced Oxidation ProcessEngineeringAlkene MetathesisNatural SciencesSodium Tungstate DihydrateDiversity-oriented SynthesisRadical (Chemistry)Organic ChemistryOlefin EpoxidationCatalysisHigh YieldChemistryDeoxygenationSynthetic ChemistryCatalytic SynthesisOxidative Stress
Abstract A catalytic system consisting of sodium tungstate dihydrate, (aminomethyl)phosphonic acid, and methyltrioctylammonium hydrogensulfate, effects the epoxidation of olefins using 30% hydrogen peroxide with a substrate-to-catalyst molar ratio of 50—500. The reaction proceeds in high yield without solvents, or, alternatively, with added toluene under entirely halide-free conditions. Lipophilic ammonium hydrogensulfate, which replaces the conventional chloride, and an (α-aminoalkyl)phosphonic acid are crucial for the high reactivity. This method is operationally simple, environmentally benign, and much more economical than the oxidation with m-chloroperbenzoic acid, allowing for a large-scale preparation of epoxides. Various substrates including terminal olefins, 1,1- and 1,2-disubstituted olefins, cyclic olefins, and tri- and tetrasubstituted olefins as well as allylic alcohols, esters, α,β-unsaturated ketones, and ethers can be epoxidized in high yield. The scope and limitations of this new reaction system are discussed.
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Yasutaka Ishii, K. YAMAWAKI, Toshikazu Ura et al. · The Journal of Organic Chemistry · 1988 · 538 citations
Dean C. Duncan, R. Carlisle Chambers, E.L. Hecht et al. · Journal of the American Chemical Society · 1995 · 467 citations