Citation: Am. Khenkin et al., Electron and oxygen transfer in polyoxometalate, H5PV2Mo10O40, catalyzed oxidation of aromatic and alkyl aromatic compounds: Evidence for aerobic Mars-van Krevelen-type reactions in the liquid homogeneous phase, J AM CHEM S, 123(35), 2001, pp. 8531-8542
Citation: Am. Khenkin et R. Neumann, Low-temperature activation of dioxygen and hydrocarbon oxidation catalyzedby a phosphovanadomolybdate: Evidence for a Mars-van Krevelen type mechanism in a homogeneous liquid phase, ANGEW CHEM, 39(22), 2000, pp. 4088-4090
Citation: Am. Khenkin et R. Neumann, Aerobic photochemical oxidation in mesoporous Ti-MCM-41: epoxidation of alkenes and oxidation of sulfides, CATAL LETT, 68(1-2), 2000, pp. 109-111
Citation: R. Neumann et al., Quinones as co-catalysts and models for the surface of active carbon in the phosphovanadomolybdate-catalyzed aerobic oxidation of benzylic and allylic alcohols: Synthetic, kinetic, and mechanistic aspects, CHEM-EUR J, 6(5), 2000, pp. 875-882
Citation: R. Ben-daniel et al., The nickel-substituted quasi-Wells-Dawson-type polyfluoroxometalate, [Ni-II(H2O)H2F6NaW17O55](9-), as a uniquely active nickel-based catalyst for theactivation of hydrogen peroxide and the epoxidation of alkenes and alkenols, CHEM-EUR J, 6(20), 2000, pp. 3722-3728
Authors:
Khenkin, AM
Neumann, R
Sorokin, AB
Tuel, A
Citation: Am. Khenkin et al., Aerobic hydrocarbon oxidation catalyzed by the vanadomolybdophosphate polyoxometalate, H5PV2Mo10O40, supported on mesoporous MCM-41, CATAL LETT, 63(3-4), 1999, pp. 189-192
Citation: Am. Khenkin et al., Reaction of aldehydes with the H5PV2Mo10O40 polyoxometalate and cooxidation of alkanes with molecular oxygen, J CATALYSIS, 182(1), 1999, pp. 82-91