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Synthesis of Ethers via Reaction of Carbanions and Monoperoxyacetals.


ABSTRACT: Although transfer of electrophilic alkoxyl ("RO+") from organic peroxides to organometallics offers a complement to traditional methods for etherification, application has been limited by constraints associated with peroxide reactivity and stability. We now demonstrate that readily prepared tetrahydropyranyl monoperoxyacetals react with sp(3) and sp(2) organolithium and organomagnesium reagents to furnish moderate to high yields of ethers. The method is successfully applied to the synthesis of alkyl, alkenyl, aryl, heteroaryl, and cyclopropyl ethers, mixed O,O-acetals, and S,S,O-orthoesters. In contrast to reactions of dialkyl and alkyl/silyl peroxides, the displacements of monoperoxyacetals provide no evidence for alkoxy radical intermediates. At the same time, the high yields observed for transfer of primary, secondary, or tertiary alkoxides, the latter involving attack on neopentyl oxygen, are inconsistent with an SN2 mechanism. Theoretical studies suggest a mechanism involving Lewis acid promoted insertion of organometallics into the O-O bond.

SUBMITTER: Kyasa S 

PROVIDER: S-EPMC4687849 | biostudies-literature | 2015 Dec

REPOSITORIES: biostudies-literature

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Synthesis of Ethers via Reaction of Carbanions and Monoperoxyacetals.

Kyasa Shiva K. SK   Meier Rebecca N RN   Pardini Ruth A RA   Truttmann Tristan K TK   Kuwata Keith T KT   Dussault Patrick H PH  

The Journal of organic chemistry 20151207 24


Although transfer of electrophilic alkoxyl ("RO+") from organic peroxides to organometallics offers a complement to traditional methods for etherification, application has been limited by constraints associated with peroxide reactivity and stability. We now demonstrate that readily prepared tetrahydropyranyl monoperoxyacetals react with sp(3) and sp(2) organolithium and organomagnesium reagents to furnish moderate to high yields of ethers. The method is successfully applied to the synthesis of a  ...[more]

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