Issue 6, 2002

An electron paramagnetic resonance study of intermediates generated from aromatic aldimines

Abstract

It was shown by EPR spectroscopy that N-aryl-imines undergo hydrogen atom abstraction by tert-butoxyl radicals to generate imidoyl radicals in competition with addition to the C[double bond, length as m-dash]N double bond to generate aminyl radicals. The latter were subsequently oxidised to nitroxides (aminoxyls) and also fragmented to release tert-butyl radicals and iminyl ethers. The main products identified were imines formed by combination of the imidoyl radicals with other radicals in the system. Thus, hydrogen abstraction is probably the most important homolytic pathway for the precursor imines. A similar reactivity pattern was found for N-tert-butyl-imines. DFT computations (B3LYP with a 6-31G* basis set) indicated that α-scissions of imidoyl radicals, ArN[double bond, length as m-dash]C˙R (R = t-Bu or Me), to produce isonitriles, ArNC, were too endothermic to occur under the present experimental conditions. tert-Butoxyl radicals were shown to add to 1-isocyano-4-chlorobenzene to generate N-arylimidoyl radicals that fragmented to afford 4-chloro-1-isocyanatobenzene.

Graphical abstract: An electron paramagnetic resonance study of intermediates generated from aromatic aldimines

Supplementary files

Article information

Article type
Paper
Submitted
18 Feb 2002
Accepted
12 Apr 2002
First published
09 May 2002

J. Chem. Soc., Perkin Trans. 2, 2002, 1098-1104

An electron paramagnetic resonance study of intermediates generated from aromatic aldimines

D. Nanni, P. Pareschi and J. C. Walton, J. Chem. Soc., Perkin Trans. 2, 2002, 1098 DOI: 10.1039/B201682F

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