The influence of halide and pseudo-halide antioxidants in Fenton-like reaction systems containing copper(II) ions
暂无分享,去创建一个
M. Strlič | J. Kolar | S. Polanc | J. Malešič
[1] Shenhao Chen,et al. Impedance spectroscopic study of corrosion inhibition of copper by surfactants in the acidic solutions , 2003 .
[2] A. Davison,et al. Reaction of oxygen with 6-hydroxydopamine catalyzed by Cu, Fe, Mn, and V complexes: identification of a thermodynamic window for effective metal catalysis. , 2001, Archives of biochemistry and biophysics.
[3] V. Brânzoi,et al. The inhibition of the corrosion of Armco iron in HCl solutions in the presence of surfactants of the type of N-alkyl quaternary ammonium salts , 2000 .
[4] S. Goldstein,et al. Comments on the Mechanism of the “Fenton-Like” Reaction , 1999 .
[5] M. Strlič,et al. Aging and stabilization of alkaline paper , 1998 .
[6] P. Macfaul,et al. A Radical Account of “Oxygenated Fenton Chemistry” 1 , 1998 .
[7] C. Walling. Intermediates in the Reactions of Fenton Type Reagents , 1998 .
[8] G. Lubec. The hydroxyl radical: from chemistry to human disease. , 1996, Journal of investigative medicine : the official publication of the American Federation for Clinical Research.
[9] P. Wardman,et al. Fenton chemistry: an introduction. , 1996, Radiation research.
[10] P. Saltman,et al. Buffer-induced anomalies in the Fenton chemistry of iron and copper , 1996 .
[11] J. Donnelly,et al. Free radicals in foods. , 1995, Free radical research.
[12] É. Hideg,et al. Singlet oxygen and free radical production during acceptor- and donor-side-induced photoinhibition: Studies with spin trapping EPR spectroscopy , 1994 .
[13] S. Goldstein,et al. The Fenton reagents. , 1993, Free radical biology & medicine.
[14] R. Zepp. Hydroxyl radical formation in aqueous reactions (pH 3-8) of iron (II) with hydrogen peroxide: The ph , 1992 .
[15] R. Kahl,et al. Methodology for studying antioxidant activity and mechanisms of action of antioxidants. , 1986, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[16] B. Halliwell,et al. Oxygen free radicals and iron in relation to biology and medicine: some problems and concepts. , 1986, Archives of biochemistry and biophysics.
[17] C. Walling. Fenton's reagent revisited , 1975 .
[18] C. N. Trumbore,et al. p-Nitrosodimethylaniline as an OH Radical Scavenger in Radiation Chemistry1 , 1965 .
[19] R. W. Matthews,et al. Measurement by Benzoate Radiolytic Decarboxylation of Relative Rate Constants for Hydroxyl Radical Reactions , 1965 .
[20] Matija Strlič,et al. A comparative study of several transition metals in Fenton-like reaction systems at circum-neutral pH , 2003 .
[21] M. Strlič,et al. Some preventive cellulose antioxidants studied by an aromatic hydroxylation assay , 2001 .
[22] C. Rice-Evans,et al. Free radical damage and its control , 1994 .
[23] B. Faust,et al. Photochemistry of aqueous iron(III)-polycarboxylate complexes : roles in the chemistry of atmospheric and surface waters , 1993 .
[24] R. Kido,et al. The effects of caffeic acid and its related catechols on hydroxyl radical formation by 3-hydroxyanthranilic acid, ferric chloride, and hydrogen peroxide. , 1990, Archives of biochemistry and biophysics.
[25] A. Quintanilha,et al. CRC Handbook of free radicals and antioxidants in biomedicine , 1989 .
[26] Z. Osawa. Role of metals and metal-deactivators in polymer degradation , 1988 .
[27] V. Ashworth,et al. The inhibition of the corrosion of pure iron in 0.5 M sulphuric acid by n-alkyl quaternary ammonium iodides , 1988 .
[28] A. Simsons,et al. Rate constants for reactions of hydroxyl radicals as a function of temperature , 1984 .
[29] J. K. Thomas. Rates of reaction of the hydroxyl radical , 1965 .
[30] D. Skoog. Fundamentals of analytical chemistry , 1963 .
[31] K. J. Morgan. Some reactions of inorganic iodine compounds , 1954 .