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Ozone Oxidation of Silylalkene: Mechanistic Study and Application for the Synthesis of Silacarboxylic Acid Derivatives.

Kazunobu IgawaYuuya KawasakiSora NozakiNaoto KokanKatsuhiko Tomooka
Published in: The Journal of organic chemistry (2020)
The addition-type ozone oxidation of silylalkenes is a highly efficient reaction to provide synthetically versatile α-silylperoxy carbonyl compounds. To gain insight into the reaction mechanism, we performed a computational study, which revealed that the reaction proceeds via [1,2]-Brook rearrangement-type silyl migration of primary ozonide. In sharp contrast to the addition-type reactions, the ozone oxidation of α-alkoxysilylalkenes proceeds in a cleavage-type manner to afford excellent yields of silacarboxylic acid esters via the 1,3-cycloelimination of primary ozonide prior to 1,2-silyl migration.
Keyphrases
  • hydrogen peroxide
  • highly efficient
  • particulate matter
  • electron transfer
  • nitric oxide
  • air pollution
  • single cell
  • visible light