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Publications in Math-Net.Ru
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Zeldovich's spin physics (on the 110th anniversary of the birth of Yakov Borisovich Zeldovich)
UFN, 194:4 (2024), 365–368
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Magnetic field effects on the initiation of chain oxidation
Mendeleev Commun., 31:3 (2021), 341–342
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Magnetic field as a means to identify initiating reaction in oxidation of organic substances with molecular oxygen
Mendeleev Commun., 30:4 (2020), 433–435
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Microwave stimulation of dislocations and the magnetic control of the earthquake core
UFN, 189:1 (2019), 47–54
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Magnetic isotopes as a means to elucidate Earth and environmental chemistry
Usp. Khim., 87:8 (2018), 727–740
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Magnetic field effect on the oxidation of hydrocarbons by molecular oxygen
Mendeleev Commun., 27:3 (2017), 246–247
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Isotope effects of hydrogen and atom tunnelling
Usp. Khim., 85:6 (2016), 557–564
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Spin propagation through the C–C and C–H bonds
Mendeleev Commun., 25:4 (2015), 264–266
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Magnetic field-dependent molecular and chemical processes in biochemistry, genetics and medicine
Usp. Khim., 83:1 (2014), 1–12
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Magnetoplasticity and the physics of earthquakes. Can a catastrophe be prevented?
UFN, 184:1 (2014), 101–108
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Magnetic effects in the oxidation of silicon
Pis'ma v Zh. Èksper. Teoret. Fiz., 96:2 (2012), 107–109
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Mercury isotope effects in the environmental chemistry and biochemistry of mercury-containing compounds
Usp. Khim., 78:4 (2009), 345–354
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How mechanical energy of phosphorylating enzymes transforms into the energy of chemical bonds?
Mendeleev Commun., 18:2 (2008), 63–66
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Magnetic isotopic effect in the plasticity of diamagnetic crystals
Pis'ma v Zh. Èksper. Teoret. Fiz., 84:9 (2006), 590–591
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New horizons of chemistry: single molecules
Usp. Khim., 75:1 (2006), 3–26
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Chemically induced magnetic isotope effect on tin nuclei
Mendeleev Commun., 15:1 (2005), 4–6
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Spin catalysis as a new type of catalysis in chemistry
Usp. Khim., 73:11 (2004), 1123–1130
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Nanochemistry: a direct route to high technologies of the new century
Usp. Khim., 72:5 (2003), 419–437
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Paramagnetic resonance and detection of a single electron spin
Usp. Khim., 70:7 (2001), 611–618
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Ionospheric precursors to earthquakes
UFN, 166:9 (1996), 1023–1029
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The nuclear-spin selectivity of chemical reactions
Usp. Khim., 64:9 (1995), 863–871
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Unusual Uranium Isotope Effect Induced by Photolysis of Uranyl Salts in Micelles
Mendeleev Commun., 3:4 (1993), 135–136
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Second generation of magnetic effects in chemical reactions
Usp. Khim., 62:12 (1993), 1139–1149
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Vitalii Iosifovich Gol'danskii (on his seventieth birthday)
UFN, 163:8 (1993), 117–118
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Unusual Magnetic Behaviour of Polyferro(phenyl)siloxanes
Mendeleev Commun., 2:1 (1992), 32–33
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Radio Induced 12C/13C Magnetic Isotope Effect
Mendeleev Commun., 1:3 (1991), 85–86
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The photochemistry of uranyl: spin selectivity and magnetic effects
Usp. Khim., 60:6 (1991), 1105–1127
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Organic and molecular ferromagnetics: advances and problems
Usp. Khim., 59:4 (1990), 529–550
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Magnetic-spin effects in chemistry and molecular physics
UFN, 155:1 (1988), 3–45
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Modern Chemical Physics. Aims and Pathways to Progress
Usp. Khim., 56:10 (1987), 1593–1638
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Magneto-spin effects in chemical reactions
UFN, 151:1 (1987), 173–174
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Problems in Modern Chemistry
Usp. Khim., 55:12 (1986), 1949–1978
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Complexes of Molecular Oxygen with Organic Molecules
Usp. Khim., 54:2 (1985), 195–213
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Chemically Induced Radio-frequency Emission and Chemical Radiophysics
Usp. Khim., 52:1 (1983), 3–19
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Some Problems of the Kinetics of Radical Reactions in Solid Polymers
Usp. Khim., 51:3 (1982), 361–393
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Dynamics of Elementary Processes in Liquids
Usp. Khim., 48:10 (1979), 1713–1746
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Magnetic Effects in Chemical Reactions
Usp. Khim., 45:5 (1976), 761–792
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Reactions of Electronically Excited Radicals and the Quenching of Excited States by Radicals
Usp. Khim., 44:12 (1975), 2171–2204
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Chemically Induced Polarisation of Electrons and Nuclei
Usp. Khim., 40:10 (1971), 1729–1760
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Radical Degradation and Stabilisation Reactions of Solid Polymers
Usp. Khim., 39:1 (1970), 130–157
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Nuclear Magnetic Resonance in Radicals and in Radical Reactions
Usp. Khim., 37:10 (1968), 1852–1878
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Hydrogen bonds and π-complexes in radical liquid-phase reactions
Usp. Khim., 36:3 (1967), 475–493
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Electron spin resonance spectra of individual polyradicals
Dokl. Akad. Nauk SSSR, 163:6 (1965), 1416–1418
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The possibility of acidbasic catalysis of radical reactions
Dokl. Akad. Nauk SSSR, 161:4 (1965), 878–881
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The hydrogen bond in radicals
Dokl. Akad. Nauk SSSR, 158:4 (1964), 932–934
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The dipole moments of the radical and of the molecule: diphenyl nitrogen oxide and diphenyl hydroxylamine
Dokl. Akad. Nauk SSSR, 148:1 (1963), 95–96
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An investigation of the transformations of free radicals in $\gamma$-irradiated polyisoprenes
Dokl. Akad. Nauk SSSR, 146:3 (1962), 611–614
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The kinetics of reactions between tritertiary butyl phenoxyl radical and certain hydrocarbons
Dokl. Akad. Nauk SSSR, 144:2 (1962), 392–394
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The formation of inhibitor radicals in the oxidation of polypropylene
Dokl. Akad. Nauk SSSR, 143:1 (1962), 146–149
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Oxidation of $\beta$-naphthol and some of its derivatives by peroxide compounds
Dokl. Akad. Nauk SSSR, 140:5 (1961), 1096–1099
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Separation of free radicals by paper chromatography
Dokl. Akad. Nauk SSSR, 139:4 (1961), 916–918
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A semiempirical method of estimating the formation heats of hydroperoxides and the conjugation
energies of some peroxide radicals
Dokl. Akad. Nauk SSSR, 133:5 (1960), 1102–1104
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Zel’dovich's spin physics
UFN, 0
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Chemistry on the border of two centuries – achievements and prospects
Usp. Khim., 68:2 (1999), 99–118
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Magnetic properties of free radicals
UFN, 155:1 (1988), 180
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Ñêîðîñòè ðàäèêàëüíûõ ðåàêöèé â æèäêîñòè
UFN, 146:4 (1985), 727
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