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Catalytic Ring Expansions of Cyclic Alcohols Enabled by Proton-Coupled Electron Transfer.


ABSTRACT: We report here a catalytic method for the modular ring expansion of cyclic aliphatic alcohols. In this work, proton-coupled electron transfer activation of an allylic alcohol substrate affords an alkoxy radical intermediate that undergoes subsequent C-C bond cleavage to furnish an enone and a tethered alkyl radical. Recombination of this alkyl radical with the revealed olefin acceptor in turn produces a ring-expanded ketone product. The regioselectivity of this C-C bond-forming event can be reliably controlled via substituents on the olefin substrate, providing a means to convert a simple N-membered ring substrate to either n+1 or n+2 ring adducts in a selective fashion.

SUBMITTER: Zhao K 

PROVIDER: S-EPMC7219538 | biostudies-literature | 2019 Jun

REPOSITORIES: biostudies-literature

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Catalytic Ring Expansions of Cyclic Alcohols Enabled by Proton-Coupled Electron Transfer.

Zhao Kuo K   Yamashita Kenji K   Carpenter Joseph E JE   Sherwood Trevor C TC   Ewing William R WR   Cheng Peter T W PTW   Knowles Robert R RR  

Journal of the American Chemical Society 20190523 22


We report here a catalytic method for the modular ring expansion of cyclic aliphatic alcohols. In this work, proton-coupled electron transfer activation of an allylic alcohol substrate affords an alkoxy radical intermediate that undergoes subsequent C-C bond cleavage to furnish an enone and a tethered alkyl radical. Recombination of this alkyl radical with the revealed olefin acceptor in turn produces a ring-expanded ketone product. The regioselectivity of this C-C bond-forming event can be reli  ...[more]

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