ArticleJournal of the American Chemical Society2026
Base-Promoted Benzylic C-H Amination Reactions Across a Wide pKa Spectrum Enabled by 2-Halobenzofuran and -Indole Oxidants.
Article in Journal of the American Chemical Society, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
We disclose a base-promoted method to directly couple benzylic C-H bonds of alkyl(hetero)arenes with aniline pronucleophiles using 2-halobenzofurans and -indoles as novel halogen oxidants. We also extend this reactivity to the dual use of hexamethyldisilazide (HMDS) reagents as bases and nucleophilic ammonia surrogates to access primary benzyl amines via a simple deprotection and isolation protocol. This methodology leverages halogen transfer (X-transfer) reactivity to merge deprotonation, halogenation, and nucleophilic substitution into one synergistic process that is critical for reaction success. Here, a thermodynamically uphill deprotonation event generates transient benzyl carbanionic and halide intermediates which circumvent well-known complications of dimerization in metalation-halogenation sequences and amine overalkylation from benzyl halide substitution. These features enable novel scope and selectivity opportunities over traditional C-H metalation chemistry and established radical- or nitrene-based C-H amination strategies. With reactivity guided by C-H acidity trends, this protocol is effective for polyalkylarenes, hard-to-oxidize alkyl(hetero)arenes, and substrates with oxidation-prone functional groups that are unsuitable or unselective in alternative mechanistic approaches. New benzofuran and indole X-transfer reagents (XTRs), which are compatible with amine nucleophiles and bases, allow the expansion of X-transfer oxidative coupling to a substantially wider pKa range than previously accessible. Structural studies of these easily-prepared reagents explain their enhanced productivity for C-H amination and provide guidelines for their continued application to other oxidative C-H coupling reactions.
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