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Publications in Math-Net.Ru
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Self-disassembly of plant macromolecules
Mendeleev Commun., 29:5 (2019), 589–591
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Fundamental aspects of radiation-thermal transformations of cellulose and plant biomass
Usp. Khim., 81:10 (2012), 918–935
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Synthesis of nitromethane from acetic acid by radiation-induced nitration in aqueous solution
Mendeleev Commun., 17:5 (2007), 289–290
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Reactivity of 1-hydroxyalkyl radicals in the reduction of Hg2+ and I2 in aqueous solutions
Mendeleev Commun., 14:2 (2004), 81–83
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Kinetics, mechanism and intermediates of some radiation-induced reactions in aqueous solutions
Usp. Khim., 73:1 (2004), 107–120
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Effect of polyelectrolyte concentration on the rate of the catalytic reduction of methyl viologen with hydrogen in an aqueous solution in the presence of platinum nanoparticles
Mendeleev Commun., 13:5 (2003), 201–202
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Formation and absorption spectra of X3− ions upon the radiation-chemical oxidation of Cl– in the presence of Br– (Cl, Br = X) in aqueous solution
Mendeleev Commun., 12:2 (2002), 55–57
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Radiation-chemical oxidation of bromide ions and formation of tribromide ions in weakly acidic aqueous solutions
Mendeleev Commun., 11:4 (2001), 149–150
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Silver nanoparticles stabilised with heteropoly anions in an aqueous solution: optical properties and electronic polarisation
Mendeleev Commun., 11:4 (2001), 147–148
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Radiation-chemical degradation of cellulose and other polysaccharides
Usp. Khim., 67:4 (1998), 353–375
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Metal ions in unusual and unstable oxidation states in aqueous solutions: preparation and properties
Usp. Khim., 66:2 (1997), 103–116
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Kinetic Isotope Effect for γ-Radiolytic Reduction of Divalent Lead in Aqueous Solutions
Mendeleev Commun., 4:4 (1994), 124–125
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The Radiation Chemistry of Cellulose
Usp. Khim., 53:12 (1984), 2056–2077
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Metal Ions in Unusual and Unstable States of Oxidation and the Steps of Electrochemical Reactions
Usp. Khim., 50:12 (1981), 2137–2166
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Primary products of the radiolysis of water and their reactivity
Usp. Khim., 36:8 (1967), 1427–1459
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The mechanism underlying the radiolysis of aqueous nitrate solutions
Dokl. Akad. Nauk SSSR, 159:6 (1964), 1357–1360
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The electron spin resonance method used for proving the participation of the trapped electron in the radiation
chemical reactions taking place in frozen aqueous solutions
Dokl. Akad. Nauk SSSR, 154:4 (1964), 899–902
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Electron spin resonance spectrum of a hydrated electron in irradiated frozen alkaline solutions
Dokl. Akad. Nauk SSSR, 149:2 (1963), 363–366
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