Abstract
Cyclobutanols undergo an oxidative ring
expansion into 1,2-dioxanols by using Co(acac)2 and triplet oxygen (3O2)
as radical promoters. The formation of an alkoxy radical drives to the
regioselective break of the strained ring with stabilization of a new radical
on the most substituted side. The radical traps then oxygen to form
1,2-dioxanols. The reaction is particularly effective on secondary cyclobutanols
but can work also on tertiary alcohols. Further acetylation generates peroxycarbenium species under
catalytic Lewis acid conditions, which react with neutral nucleophiles. Many original
1,2-dioxanes, which would be difficult to prepare by another method, were then
obtained with a preferred 3,6-cis-configuration.
This method provides an interesting access to the total synthesis of many
natural endoperoxides.
Supplementary materials
Title
Copy of 1H NMR and 13C NMR spectra
Description
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Title
Experimental Dioxanes
Description
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