Redox Systems with Sulphur-Centered Species
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[1] P. Wardman,et al. Reduction Potentials of One-Electron Couples Involving Free Radicals in Aqueous Solution , 1989 .
[2] S. Mezyk,et al. Kinetics of oxidation of Cu(I) complexes of cysteine and penicillamine: nature of intermediates and reactants at pH 10.0 , 1989 .
[3] D. Armstrong,et al. Reduction of substituted flavins by .CO2- and cyclic disulphide anions. , 1987, International journal of radiation biology and related studies in physics, chemistry, and medicine.
[4] L. Forni,et al. Thiyl and phenoxyl free radicals and NADH. Direct observation of one-electron oxidation. , 1986, The Biochemical journal.
[5] L. Forni,et al. Thiyl free radicals and the oxidation of ferrocytochrome c. Direct observation of coupled hydrogen-atom- and electron-transfer reactions. , 1986, The Biochemical journal.
[6] D. Armstrong,et al. Thiyl radical oxidation of copper(I): formation and spectra of oxidized copper thiolates , 1986 .
[7] D. Armstrong,et al. One-electron oxidation of dihydroflavin , 1985 .
[8] D. Armstrong,et al. The dependence of the photochemically induced reduction of lumiflavin on pH, light intensity, and concentration of sulphydryl compounds , 1985 .
[9] D. Armstrong,et al. REACTIONS OF O‐2, H2O2 AND OTHER OXIDANTS WITH SULFHYDRYL ENZYMES‡ , 1978, Photochemistry and photobiology.
[10] D. Armstrong,et al. The repair, protection and sensitization of papain with respect to inactivation by H2O2 and OH: effects of dithiothreitol, penicillamine, cystine and penicillamine disulphide. , 1975, International journal of radiation biology and related studies in physics, chemistry, and medicine.
[11] E. Hayon,et al. Charge transfer spectra of halogen atoms in water. Correlation of the electronic transition energies of iodine, bromine, chlorine, hydroxyl, and hydrogen radicals with their electron affinities , 1975 .
[12] B. Bielski,et al. Pulse radiolysis study of optical absorption and kinetic properties of dithiothreitol free radical , 1973 .
[13] J. Aldrich,et al. Selective free radical reactions with proteins and enzymes: reactions of inorganic radical anions with amino acids. , 1972, Radiation research.
[14] J. Packer,et al. The radiolysis of oxygenated cysteine solutions at neutral pH. The role of RSS̄R and O2 , 1970 .
[15] H. Schuchmann,et al. The reverse of the 'repair' reaction of thiols: H-abstraction at carbon by thiyl radicals. , 1987, International journal of radiation biology and related studies in physics, chemistry, and medicine.
[16] A. Simsons,et al. Radiolysis of solutions containing organo-disulphides☆ , 1984 .
[17] R. Ahmad,et al. The effect of pH and complexation on redox reactions between RS• radicals and flavins , 1984 .
[18] B. Michael,et al. Pulse radiolysis of sulphur compounds. Part 2.—Free radical “repair” by hydrogen transfer from sulphydryl compounds , 1968 .
[19] E. E. Reid. Organic chemistry of bivalent sulfur , 1958 .