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Hydrogen Peroxide Oxidation of Mono- and Disubstituted Alkylarenes Catalyzed by Dinuclear CoIII-CuII Macrocyclic Complex

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
C-H oxidation of anthracene and eight other alkylarenes with binuclear macrocyclic complex of CoIII-CuII as a catalyst in the presence of 30% aqueous hydrogen peroxide to the corresponding carbonyl compounds were studied. The oxidation took place selectively at the benzylic C-H bond and no oxidation was observed in aromatic ring. The reaction is simple, clean and high yielding and generates water as the only by-product.
Rocznik
Strony
825--830
Opis fizyczny
Bibliogr. 22 poz., rys.
Twórcy
  • Department of Chemistry, University of Mazandaran, P.O.Box 453, Babolsar, Iran
autor
  • Department of Chemistry, University of Tehran, Tehran, Iran
Bibliografia
  • 1.Davies J. A., Watson P.L., Liebman J.F. and Greenberg A., Selective Hydrocarbon Oxidation, Principles and Progress, Eds. VCH, New York 1990.
  • 2.Shul’pin G.B., Organic Reactions Catalyzed by Metal Complexes, Nauka: Moscow, 1988.
  • 3.Shilov A.E. and Shul’pin G.B., The Activation and Catalytic Reactions of Hydrocarbons, Nauka, Moscow, 1995.
  • 4.Shilov A.E. and Shul’pin G.B., Russ. Chem. Rev., 59, 853 (1990).
  • 5.Oyama S.T. and Hightower J.W., Catalytic Selective Oxidation, Eds., ACS: Washington, 1993.
  • 6.Barton D.H.R., Martell A.E. and Sawyer D.T., The Activation of Dioxygen and Homogeneous Catalytic Oxidation, Eds., Plenum Press, New York, 1993.
  • 7.Centi G. and Trifiro F., New Developments in Selective Oxidation, Eds., Elsevier: Amsterdam, 1990.
  • 8.Sawyer D.T., Oxygen Chemistry; Oxford University Press: Oxford, 1991.
  • 9.Simandi L.I., Dioxygen Activation and Homogeneous Catalytic Oxidation, Ed., Elsevier, Amsterdam, 1991.
  • 10.Martell A.E. and Sawyer D.T., Oxygen Complexes and Oxygen Activation by Transition Metals, Eds., Plenum Press, New York, 1988.
  • 11.Drago R.S., Coord. Chem. Rev., 117, 185 (1992).
  • 12.Sychev A.Y. and Isak V.G., Vsp. Khim., 64, 1183 (1995).
  • 13.Shul’pin G.B., Chimie, 163 (2003).
  • 14.Velusamy S. and Punniyamurthy T., Tetrahedron Lett., 44, 8955 (2003).
  • 15.Das S. and Punniyamurthy T., Tetrahedron Lett., 44, 6033 (2003).
  • 16.Mlochowski J., Brz^szcz M., Chojnacka M., Giurg M. and Wojtowicz H., Arkivoc, 226 (2004).
  • 17.Shul’pin G.B., Shilov A.E. and Suss-Fink G., Tetrahedron Lett., 42, 7253 (2001).
  • 18.Bandyopadhyay R., Biswas S., Guha S., Mukherjee A.K. and Bhattacharyya R., Chem. Commun., 162" (1999).
  • 19.Moody C.J. and O’Connell J.L., Chem. Commun., 1311 (2000).
  • 20.Ohta T., Tachiyama T., Yoshizawa K. and Yamabe T., Tetrahedron Lett., 41, 2581 (2000).
  • 21.Golchoubian H., Waltz W.L. and Quail J.W., Can. J. Chem., 37, 77 (1999).
  • 22.McCollum D.G., Hall L., White C., Ostrander R., Rheingold A.L., Whelan J. and Bosnich B., lnorg. Chem., 33, 924 (1994).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ3-0002-0092
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