Issue 5, 1975

The Wallach rearrangement. Part XIV. Rearrangements of azoxynaphthalenes in sulphuric acid. Kinetics and mechanisms

Abstract

The rates of rearrangement of the 1-naphthyl-, 2-naphthyl-, and phenyl-substituted azoxy-compounds (1)–(6) in moderately concentrated sulphuric acid solutions have been investigated. A mechanism involving quinonoid type intermediates is used to explain the acidity dependence of the observed rate constants for compounds (1), (2), and (4)–(6) at H2SO4 concentrations below ca. 83% w/w. Equilibrium protonation of the substrates (KSH+) is followed by nucleophilic attack (HSO4) on aromatic carbon yielding the uncharged quinonoid intermediates (S′). Another equilibrium protonation of S′(KSH+) on the N–OH function is followed by rate-determining abstraction of an aryl-bound hydrogen with simultaneous loss of H2O. In contrast, compound (3) exhibits a linear log (rate) correlation with log aH2SO4 at all acidities, indicative of general acid catalysed formation of a dicationic intermediate; the other compounds also appear to react by this mechanism above 83% H2SO4. Thus in the low acid region the isomeric reactants (2) and (3) follow different reaction pathways while yielding a common product.

Article information

Article type
Paper

J. Chem. Soc., Perkin Trans. 2, 1975, 471-478

The Wallach rearrangement. Part XIV. Rearrangements of azoxynaphthalenes in sulphuric acid. Kinetics and mechanisms

R. A. Cox, A. J. Dolenko and E. Buncel, J. Chem. Soc., Perkin Trans. 2, 1975, 471 DOI: 10.1039/P29750000471

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