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May 16, 2026ACS Organic & Inorganic Au0 citationsOpen Access

Diastereoselective Synthesis of α-Fluoro-γ-lactams via Difluorocarbene-Triggered Cyclization and Rearrangement

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MJMaryam JabbarpoorYLYanmei LiAAAlex Akhundov

Key Points

  • This research aims to develop a diastereoselective method for synthesizing α-fluoro-γ-lactams using difluorocarbene.
  • Utilized β-aminoketones and ethyl bromodifluoroacetate as starting materials.
  • Conducted density functional theory calculations to analyze cyclization kinetics.
  • Incorporated K2CO3 base to activate EBDFA and facilitate intermediate formation.
  • Successfully synthesized α-fluoro-γ-lactams with a significant diastereomeric ratio governed by Curtin–Hammett kinetics.
  • Showed favorable C–F bond formation via a nucleophilic fluoride mechanism.
  • Provided a modular synthesis that expands the understanding of difluorocarbene applications.

Abstract

We report a difluorocarbene-enabled, diastereoselective synthesis of α-fluoro-γ-lactams from readily accessible β-aminoketones and inexpensive, commercially available ethyl bromodifluoroacetate (EBDFA). Compared to established routes to this medicinally relevant motif, our strategy avoids the use of costly electrophilic fluorinating or deoxyfluorinating reagents, highlighting difluorocarbene as a versatile C1 and F building block. Density functional theory (DFT) calculations reveal that cyclization is the stereodetermining step, with observed diastereomeric ratios governed by Curtin–Hammett kinetics. In addition to activating EBDFA, the K2CO3 base enables the favorable formation of a transient hemiaminal epoxide intermediate, with subsequent C–F bond formation proceeding through a nucleophilic fluoride ring-opening pathway. Overall, this work not only delivers a direct and modular route to stereodefined α-fluoro-γ-lactams but more broadly expands our mechanistic understanding of difluorocarbene-mediated amine-carbonyl coupling reactions.

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Cite This Study

Jabbarpoor et al. (2026) studied this question.

synapsesocial.com/papers/6a080b38a487c87a6a40d5c0https://doi.org/10.1021/acsorginorgau.6c00028
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