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DOI: 10.1055/s-2002-22706
Highly Selective and Efficient Conversion of Alkyl Aryl and Alkyl Cyclopropyl Ketones to Aromatic and Cyclopropane Carboxylic Acids by Aerobic Catalytic Oxidation: A Free-radical Redox Chain Mechanism.
Publication History
Publication Date:
05 February 2007 (online)

Abstract
An efficient and convenient method has been developed for the oxidation of aryl alkyl and cyclopropyl alkyl ketones to aromatic and cyclopropane carboxylic acids by molecular oxygen at atmospheric pressure, catalysed by Mn(NO3)2 in combination with Co(NO3)2 or Cu(NO3)2. This simple, cheap and highly selective process has a general character for the synthesis of carboxylic acids and it is particularly suitable for industrial applications.
Key words
carboxylic acids - kjetones - oxidation by molecular oxygen - free-radical - redox catalysis
- 1
Lee JC.Choi JH.Lee YC. Synlett 2001, 1563 - 2
Heaney H. In Comprehensive Organic Synthesis Vol. 2:Trost BM.Fleming I. Pergamon Press; New York: 1991. p.733 - 3
Gurunath S.Sudalai A. Synlett 1999, 559 - 4
Olah GA.Ramos MT.Wang Q.Surya Prakash GK. Synlett 1991, 41 - 5
Žabjek A.PetriË A. Tetrahedron Lett. 1999, 40: 6077 - 6
Kajigaeshi S.Nakagawa T.Nagasaki N.Fujisaki S. Synthesis 1985, 674 - 7
Moriarty RM.Prakash I.Penmasta R. J. Chem. Soc., Chem.Commun. 1987, 202 - 8
Kathó A.Beck MT. Synlett 1992, 165 - 9
Minisci F,Fumagalli C, andPirola R. inventors; It. Pat. MI2000A000237. - 10
Bjørsvik H.-R.Minisci F. Org. Process Res. Dev. 1999, 3: 330 - 11
Bjørsvik H.-R.Norman K. Org. Process Res. Dev. 1999, 3: 341 -
12a
Citterio A.Gentile A.Minisci F.Serravalle M. Gazz. Chim. Ital. 1983, 113: 443 ; and references therein -
12b More recent reviews:
Melikian GG. Synthesis 1993, 833 -
12c Also see:
Linker T. J. Prakt. Chem. 1997, 339: 488 - 13
Walling C. Active Oxygen in ChemistryFoote CS.Valentine JS.Greenberg A.Liebmann JL. Blackie Academic-Professional; New York: 1995. p.42
References
A large scale procedure: 12 g of acetophenone, 2 mmol of Mn(NO3)2, 2 mmol of Co(NO3)2 in 100 mL of acetic acid were stirred under oxygen atmosphere at 100 °C and ambient pressure for 6 h. The solution was analysed by GLC, revealing the presence of 0.42 g of unreacted acetophenone. The solution was evaporated and the residue was dissolved in 100 mL of aqueous solution of NaHCO3; the aqueous phase was extracted with ethyl acetate, then acidified with H2SO4 and extracted again with ethyl acetate. By evaporating the solvent 11.1 g of pure benzoic acid (> 99% in GLC) were obtained. Conversion 96.5%, selectivity 93%.