Polyoxoanion-supported, atomically dispersed transition metals: The catalytic oxidation of cyclohexene with dioxygen by the catalyst precursors ((n-C sub 4 H sub 9 ) sub 4 N) sub 5 Na sub 3 ((1,5-COD)Irter dot P sub 2 W sub 15 Nb sub 3 O sub 62 ), ((n-C sub 4 H sub 9 ) sub 4 N) sub 5 Na sub 3 ((1,5-COD)Rhter dot P sub 2 W sub 15 Nb sub 3 O sub 62 ), and ((n-C sub 4 H sub 9 ) sub 4 N) sub 4. 5 Na sub 2. 5 ((C sub 6 H sub 6 )Ruter dot P sub 2 W sub 15 Nb sub 3 O sub 62 )
- Univ. of Oregon, Eugene (USA)
((n-C{sub 4}H{sub 9}){sub 4}N){sub 5}Na{sub 3}((1,5-COD)Ir{center dot}P{sub 2}W{sub 15}Nb{sub 3}O{sub 62}), 1, ((n-C{sub 4}H{sub 9}){sub 4}N){sub 5}Na{sub 3}((1,5-COD)Rh{center dot}P{sub 2}W{sub 15}Nb{sub 3}O{sub 62}), and ((n-C{sub 4}H{sub 9}){sub 4}N){sub 4.5}Na{sub 2.5}((C{sub 6}H{sub 6})Ru{center dot}P{sub 2}W{sub 15}Nb{sub 3}O{sub 62}) have been shown to catalyze the oxygenation of cyclohexene with molecular oxygen. The polyoxoanion-supported iridium (I) complex, 1, shows the highest activity of this group with a turnover frequency of 2.9 h{sup {minus}1} at 38{degree}C in CH{sub 2}Cl{sub 2} (540 total turnovers), which is 100-fold greater than its parent iridium compound, ((1,5-COD)IrCl){sub 2}. Additional experiments using H{sub 2}/O{sub 2} mixtures and H{sub 2}O{sub 2} are also discussed. The apparent rate law for the oxidation of cyclohexene by O{sub 2} by 1 is -d(cyclohexene)/dt = k{sub 2} obsd {center dot} (1){sup 1}(cyclohexene){sup 1}P(O{sub 2}){sup 1{yields}0}. These compounds constitute the first examples of oxygenation catalysis using molecular oxygen and a polyoxoanion-supported transition-metal precatalyst.
- DOE Contract Number:
- FG06-89ER13998
- OSTI ID:
- 5515133
- Journal Information:
- Journal of Catalysis; (United States), Journal Name: Journal of Catalysis; (United States) Vol. 128:1; ISSN 0021-9517; ISSN JCTLA
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
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ALKALI METAL COMPLEXES
ALKENES
CATALYSIS
CATALYST SUPPORTS
CATALYTIC EFFECTS
CATALYTIC REFORMING
CHALCOGENIDES
CHEMICAL REACTION KINETICS
CHEMICAL REACTIONS
COMPLEXES
CYCLOALKENES
ELEMENTS
HEXENES
HYDROCARBONS
HYDROGEN
HYDROGEN COMPOUNDS
HYDROGEN PEROXIDE
IRIDIUM COMPLEXES
KINETICS
NIOBIUM COMPOUNDS
NIOBIUM OXIDES
NONMETALS
ORGANIC COMPOUNDS
ORGANOMETALLIC COMPOUNDS
OXIDATION
OXIDES
OXYGEN
OXYGEN COMPOUNDS
PEROXIDES
PHOSPHIDES
PHOSPHORUS COMPOUNDS
PNICTIDES
REACTION KINETICS
REFORMER PROCESSES
REFRACTORY METAL COMPOUNDS
RHODIUM COMPLEXES
RUTHENIUM COMPLEXES
SODIUM COMPLEXES
SURFACE PROPERTIES
TRANSITION ELEMENT COMPLEXES
TRANSITION ELEMENT COMPOUNDS
TUNGSTEN COMPOUNDS
TUNGSTEN OXIDES