Direct β‐ and γ‐C(sp3)−H Alkynylation of Free Carboxylic Acids

In this study we report the identification of a novel class of ligands for palladium‐catalyzed C(sp3)−H activation that enables the direct alkynylation of free carboxylic acid substrates. In contrast to previous synthetic methods, no introduction/removal of an exogenous directing group is required....

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Published inAngewandte Chemie International Edition Vol. 59; no. 51; pp. 23127 - 23131
Main Authors Ghiringhelli, Francesca, Uttry, Alexander, Ghosh, Kiron Kumar, Gemmeren, Manuel
Format Journal Article
LanguageEnglish
Published WEINHEIM Wiley 14.12.2020
Wiley Subscription Services, Inc
John Wiley and Sons Inc
EditionInternational ed. in English
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Summary:In this study we report the identification of a novel class of ligands for palladium‐catalyzed C(sp3)−H activation that enables the direct alkynylation of free carboxylic acid substrates. In contrast to previous synthetic methods, no introduction/removal of an exogenous directing group is required. A broad scope of acids including both α‐quaternary and challenging α‐non‐quaternary can be used as substrates. Additionally, the alkynylation in the distal γ‐position is reported. Finally, this study encompasses preliminary findings on an enantioselective variant of the title transformation as well as synthetic applications of the products obtained. No detours—The direct C(sp3)−H alkynylation of free carboxylic acids in the β‐ and γ‐position is achieved using a Pd‐catalyst with a newly discovered ligand class. The synthetic method features a broad scope including preliminary findings on an enantioselective variant and can be conducted on a preparatively useful scale.
Bibliography:https://doi.org/10.26434/chemrxiv.12770468.v1
Dedicated to Prof. Antonio M. Echavarren on the occasion of his 65th birthday
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A previous version of this manuscript has been deposited on a preprint server
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A previous version of this manuscript has been deposited on a preprint server (https://doi.org/10.26434/chemrxiv.12770468.v1).
ISSN:1433-7851
1521-3773
DOI:10.1002/anie.202010784