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Catalytic, Asymmetric α-Fluorination of Acid Chlorides: Dual Metal−Ketene Enolate Activation
Journal article   Open access

Catalytic, Asymmetric α-Fluorination of Acid Chlorides: Dual Metal−Ketene Enolate Activation

Daniel H. Paull, Michael T. Scerba, Ethan ALDEN-DANFORTH, Leland R. Widger and Thomas Lectka
Journal of the American Chemical Society, Vol.130(51), pp.17260-17261
12-24-2008
PMCID: PMC2651145
PMID: 19049284

Abstract

In this Communication, we disclose a catalytic, highly enantioselective (up to >99% ee) α-fluorination of acid chlorides to produce a variety of optically active carboxylic acid derivatives from readily accessible and commercially available starting materials. The reaction depends on dually activated ketene enolates generated from two discrete catalysts—a chiral nucleophile and an achiral transition metal complex working in tandem. The active, putative α-fluorobis(sulfonimide) intermediates readily transacylate in situ under mild conditions upon addition of a wide variety of nucleophiles, including complex natural products. As a consequence, the power of this method is witnessed by the broad range of α-fluorinated products that can be accessed efficiently depending on the work up conditions.
url
https://doi.org/10.1021/ja807792cView
Published (Version of record) Open

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