2022
DOI: 10.3390/magnetochemistry8040044
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Magnetic Field Effect on the Oxidation of Unsaturated Compounds by Molecular Oxygen

Abstract: A quantum-chemical analysis of the effect of a constant magnetic field on radical formation in the processes of chain oxidation of organic compounds by molecular oxygen is presented. The calculation of the total electronic energies and thermodynamic functions of the compounds involved in the reactions was performed by the density functional method with the hybrid exchange-correlation functional of Becke, Lee, Yang and Parr DFT B3LYP/6-311G** using the NWChem software package. The effect of the magnetic field o… Show more

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Cited by 1 publication
(5 citation statements)
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“…In accordance with [11,[25][26][27][28], the influence of a magnetic field increases the disproportionation rate constant of superoxide radicals, lowers their concentration, which leads to a drop in W. By intercepting O 2…”
Section: Autooxidation Of Adrenalinementioning
confidence: 63%
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“…In accordance with [11,[25][26][27][28], the influence of a magnetic field increases the disproportionation rate constant of superoxide radicals, lowers their concentration, which leads to a drop in W. By intercepting O 2…”
Section: Autooxidation Of Adrenalinementioning
confidence: 63%
“…The spin state of a radical pair can change due to spin evolution, for example, due to the Zeeman interaction of electron spins with an environment (with magnetic field, in this case [2,9,33,34]). In accordance with [2,9,11,[26][27][28]33,34], magnetic field reduces the probability of recombination and cross-recombination of radical pairs. Therefore, the oxidation rate should increase with increase in field strength.…”
Section: Radical-chain Oxidation Of Adrenalinementioning
confidence: 66%
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