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Reductive Amination of Carbonyl C-C Bonds Enables Formal Nitrogen Insertion.


ABSTRACT: Given its relevance across numerous fields, reductive amination is one of the oldest and most widely used methods for amine synthesis. As a cornerstone of synthetic chemistry, it has largely remained unchanged since its discovery over a century ago. Herein, we report the mechanistically driven development of a complementary reaction, which reductively aminates the C-C σ-bond of carbonyls, not the carbonyl C-O π-bond, generating value-added linear and cyclic 3° amines in a modular fashion. Critical to our success were mechanistic insights that enabled us to modulate the resting state of a borane catalyst, minimize deleterious disproportionation of a hydroxylamine nitrogen source, and control the migratory selectivity of a key nitrenoid reactive intermediate. Experiments support the reaction

SUBMITTER: Amber C 

PROVIDER: S-EPMC11624976 | biostudies-literature | 2024 Dec

REPOSITORIES: biostudies-literature

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