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Enantioselective C2-Allylation of Benzimidazoles Using 1,3-Diene Pronucleophiles.


ABSTRACT: Although substituted benzimidazoles are common substructures in bioactive small molecules, synthetic methods for their derivatization are still limited. Previously, several enantioselective allylation reactions of benzimidazoles were reported that functionalize the nucleophilic nitrogen atom. Herein we describe a reversal of this inherent selectivity toward N-allylation by using electrophilic N-OPiv benzimidazoles with readily available 1,3-dienes as nucleophile precursors. This CuH-catalyzed approach utilizes mild reaction conditions, exhibits broad functional-group compatibility, and exclusively forms the C2-allylated product with excellent stereoselectivity.

SUBMITTER: Knippel JL 

PROVIDER: S-EPMC8025295 | biostudies-literature | 2021 Mar

REPOSITORIES: biostudies-literature

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Enantioselective C2-Allylation of Benzimidazoles Using 1,3-Diene Pronucleophiles.

Knippel James Levi JL   Ye Yuxuan Y   Buchwald Stephen L SL  

Organic letters 20210301 6


Although substituted benzimidazoles are common substructures in bioactive small molecules, synthetic methods for their derivatization are still limited. Previously, several enantioselective allylation reactions of benzimidazoles were reported that functionalize the nucleophilic nitrogen atom. Herein we describe a reversal of this inherent selectivity toward <i>N</i>-allylation by using electrophilic <i>N</i>-OPiv benzimidazoles with readily available 1,3-dienes as nucleophile precursors. This Cu  ...[more]

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