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Catalytic Electron-Transfer Oxygenation of Substrates with Water as an Oxygen Source Using Manganese Porphyrins

Journal

CHEMISTRY-A EUROPEAN JOURNAL
Volume 18, Issue 49, Pages 15794-15804

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/chem.201202041

Keywords

electron transfer; homogeneous catalysis; manganese; oxygenation; porphyrinoids

Funding

  1. Global COE program, the Global Education and Research Center for Bio-Environmental Chemistry from the Ministry of Education, Culture, Sports, Science and Technology, Japan [20108010]
  2. NRF/MEST through WCU, Korea [R31-2008-000-10010-0]
  3. National Research Foundation of Korea [R31-2012-000-10010-0] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)
  4. Grants-in-Aid for Scientific Research [20108010] Funding Source: KAKEN

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Manganese(V)oxoporphyrins are produced by the electron-transfer oxidation of manganeseporphyrins with tris(2,2'-bipyridine)ruthenium(III) ([Ru(bpy)3]3+; 2 equiv) in acetonitrile (CH3CN) containing water. The rate constants of the electron-transfer oxidation of manganeseporphyrins have been determined and evaluated in light of the Marcus theory of electron transfer. Addition of [Ru(bpy)3]3+ to a solution of olefins (styrene and cyclohexene) in CH3CN containing water in the presence of a catalytic amount of manganeseporphyrins afforded epoxides, diols, and aldehydes efficiently. Epoxides were converted to the corresponding diols by hydrolysis, and were further oxidized to the corresponding aldehydes. The turnover numbers vary significantly depending on the type of manganeseporphyrin used owing to the difference in their oxidation potentials and the steric bulkiness of the ligand. Ethylbenzene was also oxidized to 1-phenylethanol using manganeseporphyrins as electron-transfer catalysts. The oxygen source in the substrate oxygenation was confirmed to be water by using 18O-labeled water. The rate constant of the reaction of the manganese(V)oxo species with cyclohexene was determined directly under single-turnover conditions by monitoring the increase in absorbance attributable to the manganese(III) species produced in the reaction with cyclohexene. It has been shown that the rate-determining step in the catalytic electron-transfer oxygenation of cyclohexene is electron transfer from [Ru(bpy)3]3+ to the manganeseporphyrins.

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