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Liquid-phase catalytic oxidation of methyl derivatives of biphenyl
Authors:G. N. Koshel’  S. G. Koshel’  M. V. Postnova  N. V. Lebedeva  E. A. Kuznetsova  M. S. Belysheva  T. A. Yun’kova
Affiliation:(1) Yaroslavl State Technical University, Yaroslavl, Russia
Abstract:Liquid-phase catalytic oxidation into acids by air was studied for the following hydrocarbons: isomers of cyclohexyltoluenes and cyclohexyl derivatives of para-xylene, mesitylene, pseudocumene, cyclopentyltoluene, cyclohexyladamantane, 4-methylbiphenyl, 2,4-, 2,5- and 3,4-dimethylbiphenyls, hydroxymethylbiphenyls, and hydroxymethylbenzenes. The oxidation of cyclohexyltoluenes involves a methyl group and proceeds without participation of the agr-CH bond of the cyclohexyl fragment in the oxidative conversions. The reactivity of the hydrocarbons increases in the order ortho < meta < para. Consecutive conversions of the methyl groups to carboxyls occur during the oxidation of dimethylbiphenyls. In 3,4- and 2,5-dimethylbiphenyls, the methyl groups in the para and ortho positions, respectively, are first oxidized, whereas the reactivity of both of the methyl groups in 2,4-dimethylbiphenyl is virtually the same. The mechanism of the oxidation of hydroxymethylbiphenyls and hydroxymethylbenzenes involves the formation of an unstable cation radical, which is then stabilized by emitting a proton, giving hydroxybenzyl, a more stable radical.Translated from Kinetika i Kataliz, Vol. 45, No. 6, 2004, pp. 872–876.Original Russian Text Copyright © 2004 by G. Koshelrsquo, S. Koshelrsquo, Postnova, Lebedeva, Kuznetsova, Belysheva, Yunrsquokova.
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