Issue 2, 1973

Trimethylsilyloxy-radicals from peroxides: electron spin resonance study of homolytic substitution on silicon

Abstract

The photolysis of trimethylsilyl t-butyl peroxide results in homolytic fission of the O–O bond. In the presence of alkenes the e.s.r. spectra of adducts of trimethylsilyloxy-radicals are observed, together with those of allylic radicals derived from hydrogen abstraction. In the absence of reactive substrates, trimethylsilyloxy-radicals are involved in an induced decomposition of the silyl peroxide by an SH2 reaction at silicon, and the e.s.r. spectrum of the displaced t-butylperoxy-radical can be observed. The latter can also be trapped by 1,3-butadiene and the resultant allylic radical is involved in a further SH2 reaction with the silyl peroxide. The e.s.r. spectrum observed in this case is due to cis-α-trimethylsilylallyl radical produced by the secondary photolysis of the butadiene adduct with loss of formaldehyde. The possibility of homolytic rearrangement of an allylic intermediate is ruled out.

Article information

Article type
Paper

J. Chem. Soc., Perkin Trans. 2, 1973, 182-190

Trimethylsilyloxy-radicals from peroxides: electron spin resonance study of homolytic substitution on silicon

D. J. Edge and J. K. Kochi, J. Chem. Soc., Perkin Trans. 2, 1973, 182 DOI: 10.1039/P29730000182

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