β-Arylation of Racemic Secondary Benzylic Alcohols to Access Enantioenriched β-Arylated Alcohols.

Angew Chem Int Ed Engl

Key Laboratory of Applied Surface and Colloid Chemistry, Ministry of Education, School of Chemistry and Chemical Engineering, Shaanxi Normal University, Xi'an, 710062, China.

Published: July 2023

AI Article Synopsis

  • * The study demonstrates a successful process for selectively modifying a specific C-H bond in secondary alcohols using aryl bromides, resulting in the creation of 1,2-diaryl alcohols.
  • * Additionally, the research achieved an enantioconvergent reaction that transforms racemic secondary alcohols into chiral 1,2-diaryl alcohols, leveraging a cooperative catalyst system of palladium (Pd) and ruthenium (Ru).

Article Abstract

The transformation of alcohols into value-added products is of great importance, as simple alcohols are widespread and can be easily derived from both fossil fuels and biomass. The selective functionalization of a sp C-H bond on the alkyl side chain of an alcohol over its hydroxyl group would offer an expedient route to expand the chemical space of alcohols but it remains a challenging task. Harnessing the borrowing hydrogen strategy, the β-arylation of secondary alcohols with aryl bromides has been achieved in this study, which allows for the selective functionalization of a β-Csp -H bond in an alcohol substrate. Under the catalysis of a Pd complex, secondary alcohols reacted with aryl bromides to afford 1,2-diaryl alcohols with broad substrate scope in the presence of a ketone additive. Furthermore, the enantioconvergent version of the reaction has also been realized, transforming racemic secondary alcohols into enantioenriched chiral 1,2-diaryl alcohols under the cooperative Pd and Ru catalysis. Mechanism studies indicate that the reactions are enabled by borrowing hydrogen catalysis.

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http://dx.doi.org/10.1002/anie.202306015DOI Listing

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