Study on Synthesis, Characterization and Catalytic Activity of Polystyrene-supported Mo (VI) Complex in Epoxidation of Cyclohexene
章亚东, 高晓蕾, 陈霞, 王朝进, 蒋登高
Abstract
章亚东, 高晓蕾, 陈霞, 王朝进, 蒋登高
Abstract
Molybdenum (VI) complex, namely molybdenum dioxobis(2,4-pentanedione) [MoO2(acac)2] used as epoxidation catalyst species, was synthesized and characterized by elemental analysis and infrared spectrum.Polystyrene-supported molybdenum dioxobis(2,4-pentanedione) [MoO2(acac)2] for synthesis of epoxycyclohexane was prepared by phase transfer catalysis method. Effects of various factors in synthesis of epoxycyclohexane by reaction of cyclohexene and t-BuOOH in the atmosphere of nitrogen catalyzed by polystyrene-supported MoO2 (acac)2 were aLso investigated. Under the following conditions, n(cyclohexene):n(t-BuOOH)=3.5:l (based on 0.1 mol of t-BuOOH), volume of solvent ~10 ml, reaction temperature ~80℃, reaction time ~60 min, and mass of molybdenum in the catalyst ~ 2.30 × 10^-3 g, the yield of epoxycyclohexane on the basis of t-BuOOH is over 99.5%, and the purity of epoxycyclohexane is about 99.9% by gas chromatogram(GC )analysis.
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Molybdenum (VI) complex, namely molybdenum dioxobis(2,4-pentanedione) [MoO2(acac)2] used as epoxidation catalyst species, was synthesized and characterized by elemental analysis and infrared spectrum.Polystyrene-supported molybdenum dioxobis(2,4-pentanedione) [MoO2(acac)2] for synthesis of epoxycyclohexane was prepared by phase transfer catalysis method. Effects of various factors in synthesis of epoxycyclohexane by reaction of cyclohexene and t-BuOOH in the atmosphere of nitrogen catalyzed by polystyrene-supported MoO2 (acac)2 were aLso investigated. Under the following conditions, n(cyclohexene):n(t-BuOOH)=3.5:l (based on 0.1 mol of t-BuOOH), volume of solvent ~10 ml, reaction temperature ~80℃, reaction time ~60 min, and mass of molybdenum in the catalyst ~ 2.30 × 10^-3 g, the yield of epoxycyclohexane on the basis of t-BuOOH is over 99.5%, and the purity of epoxycyclohexane is about 99.9% by gas chromatogram(GC )analysis.
Key concepts: Catalysis, Cyclohexene, Molybdenum, Polystyrene, Yield (engineering), Chemistry, Solvent, Nuclear chemistry