4.6 Article

Silylboranes as New Sources of Silyl Radicals for Chain-Transfer Reactions

期刊

CHEMISTRY-A EUROPEAN JOURNAL
卷 18, 期 3, 页码 940-950

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/chem.201102318

关键词

gem-dialkyl effect; homolytic substitution; hydroboration; hydrogen transfer; radical reactions

资金

  1. Agence Nationale de la Recherche [07-BLAN-0176-02]
  2. French Ministry of Research and Technology
  3. Programme d' Actions integrees Germaine de Stael [08348SD/2005]
  4. Swiss National Science Foundation [20-135087]

向作者/读者索取更多资源

Various silylboranes, which were outfitted with a catecholborane moiety at one end and a (Me3Si)3Si moiety at the other end of a carbon chain, were prepared through the hydroboration of the corresponding unsaturated silanes. The C-centered radical species generated from these silylboranes efficiently cyclized to provide, through a 5-exo intramolecular homolytic substitution at the silicon center, the corresponding silacycle and a Me3Si radical that was subsequently trapped by sulfonyl acceptors. These cyclizations proceeded at unprecedented rates, due, in part, to a strong gem-dialkyl effect that was attributable to the presence of bulky substituents on a quaternary center located on the chain. In parallel, we designed arylsilylboranes that produced silyl radicals through a 1,5-hydrogen transfer. Such silyl radicals may be valuable radical chain carriers, for instance, in oximation reactions of alkyl halides. Finally, computational studies allowed calculation of activation barriers of the homolytic substitution step and additionally illustrated that the overall reaction mechanism involved a transition state in which the attacking carbon center, the central silicon atom, and the Me3Si leaving group were collinear.

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