A product and time-resolved kinetic study of the effect of ring substitution on the reactivity of 1,1-diarylalkoxyl radicals has been carried out. The radicals undergo an O-neophyl shift to give the isomeric 1-aryl-1-aryloxyalkyl radicals from which the corresponding aromatic ketones are formed. The rearrangement rate constants are influenced by ring substitution, increasing in the presence of electron-withdrawing substituents and decreasing in the presence of electron-donating ones. From the results of product and kinetic studies, the following migratory aptitudes have been obtained: 4-trifluoromethylphenyl > phenyl ≅ 4-methylphenyl > 4-methoxyphenyl. Excellent Hammett-type correlations between the σ(+) substituent constants and both the visible absorption band maxima and the rearrangement rate constants have been obtained. The experimental results indicate that the rearrangement is governed by electronic effects in the starting 1,1-diarylalkoxyl radicals, whereas the stability of the rearranged carbon-centered radical plays a minor role, in line with a reactant-like transition state, strongly supporting the hypothesis that the O-neophyl rearrangement of 1,1-diarylalkoxyl radicals proceeds through a concerted mechanism.

Aureliano Antunes, C., Bietti, M., Ercolani, G., Lanzalunga, O., Salamone, M. (2005). The effect of ring substitution on the O-neophyl rearrangement of 1,1-diarylalkoxyl radicals. A product and time-resolved kinetic study. JOURNAL OF ORGANIC CHEMISTRY, 70(10), 3884-3891 [10.1021/jo0502448].

The effect of ring substitution on the O-neophyl rearrangement of 1,1-diarylalkoxyl radicals. A product and time-resolved kinetic study

BIETTI, MASSIMO;ERCOLANI, GIANFRANCO;SALAMONE, MICHELA
2005-01-01

Abstract

A product and time-resolved kinetic study of the effect of ring substitution on the reactivity of 1,1-diarylalkoxyl radicals has been carried out. The radicals undergo an O-neophyl shift to give the isomeric 1-aryl-1-aryloxyalkyl radicals from which the corresponding aromatic ketones are formed. The rearrangement rate constants are influenced by ring substitution, increasing in the presence of electron-withdrawing substituents and decreasing in the presence of electron-donating ones. From the results of product and kinetic studies, the following migratory aptitudes have been obtained: 4-trifluoromethylphenyl > phenyl ≅ 4-methylphenyl > 4-methoxyphenyl. Excellent Hammett-type correlations between the σ(+) substituent constants and both the visible absorption band maxima and the rearrangement rate constants have been obtained. The experimental results indicate that the rearrangement is governed by electronic effects in the starting 1,1-diarylalkoxyl radicals, whereas the stability of the rearranged carbon-centered radical plays a minor role, in line with a reactant-like transition state, strongly supporting the hypothesis that the O-neophyl rearrangement of 1,1-diarylalkoxyl radicals proceeds through a concerted mechanism.
2005
Pubblicato
Rilevanza internazionale
Articolo
Sì, ma tipo non specificato
Settore CHIM/06 - CHIMICA ORGANICA
English
Con Impact Factor ISI
Absorption; Electron transitions; Electronic properties; Free radicals; Isomers; Ketones; Molecular structure; Reaction kinetics; Substitution reactions; 0-neophyl rearrangement; Electronic effects; Ring substitution; Time-resolved kinetic study; Aromatic compounds; 4 methoxyphenyl derivative; 4 methylphenyl derivative; 4 trifluoromethylphenyl derivative; alkyl group; aromatic compound; carbon; ketone; o neophyl derivative; phenyl group; polycyclic aromatic hydrocarbon derivative; radical; unclassified drug; article; chemical reaction kinetics; correlation coefficient; electron; isomer; molecular stability; photolysis; reaction analysis; ring substitution reaction; substitution reaction
Aureliano Antunes, C., Bietti, M., Ercolani, G., Lanzalunga, O., Salamone, M. (2005). The effect of ring substitution on the O-neophyl rearrangement of 1,1-diarylalkoxyl radicals. A product and time-resolved kinetic study. JOURNAL OF ORGANIC CHEMISTRY, 70(10), 3884-3891 [10.1021/jo0502448].
Aureliano Antunes, C; Bietti, M; Ercolani, G; Lanzalunga, O; Salamone, M
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/38245
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