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Copper-Catalyzed Dehydrogenative Amidation of Light Alkanes.


ABSTRACT: The functionalization of C-H bonds in light alkanes, particularly to form C-N bonds, remains a challenge. We report the dehydrogenative coupling of amides with C1-C4 hydrocarbons to form N-alkyl amide products with tBuOOtBu as oxidant, and a copper complex of a phenanthroline-type ligand as catalyst. The reactions occurred in good yields in benzene or supercritical carbon dioxide as solvents. This strategy allowed for the determination of the relative reactivity of these alkane C-H bonds toward this amination process and showed, in contrast to prior work with larger alkanes, that the reactivity correlated with bond dissociation energies.

SUBMITTER: Fuentes MA 

PROVIDER: S-EPMC8457245 | biostudies-literature | 2021 Aug

REPOSITORIES: biostudies-literature

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Copper-Catalyzed Dehydrogenative Amidation of Light Alkanes.

Fuentes M Ángeles MÁ   Gava Riccardo R   Saper Noam I NI   Romero Erik A EA   Caballero Ana A   Hartwig John F JF   Pérez Pedro J PJ  

Angewandte Chemie (International ed. in English) 20210716 34


The functionalization of C-H bonds in light alkanes, particularly to form C-N bonds, remains a challenge. We report the dehydrogenative coupling of amides with C1-C4 hydrocarbons to form N-alkyl amide products with tBuOOtBu as oxidant, and a copper complex of a phenanthroline-type ligand as catalyst. The reactions occurred in good yields in benzene or supercritical carbon dioxide as solvents. This strategy allowed for the determination of the relative reactivity of these alkane C-H bonds toward  ...[more]

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