Amide‐Enabled Reversal of Regioselectivity in Carbonyl‐Substituted Allenes

Overriding β‐selective nucleophilic addition to carbonyl‐conjugated π‐systems is a persistent challenge in regioselective synthesis. Here we report that a secondary amide embedded in carbonyl‐substituted allenes enables highly α‐selective acyloxylation with carboxylic acids under rhodium catalysis. The reaction proceeds without external oxidants or auxiliary‐type bidentate directing groups and tolerates a wide range of aromatic, heteroaromatic, aliphatic, and alkenyl carboxylic acids. Control experiments with ketone, ester, and N ‐methyl amide analogs reveal that the secondary amide functionality is essential for productive α‐selective coupling. These results indicate a substrate‐embedded secondary amide strategy for redirecting nucleophilic addition to carbonyl‐substituted allenes.

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Publication Details

Journal
Advanced Synthesis & Catalysis
Published
2026-09-29
DOI
https://doi.org/10.1002/adsc.70794
Primary Topic
Advanced Synthetic Organic Chemistry
Type
article
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article

Amide‐Enabled Reversal of Regioselectivity in Carbonyl‐Substituted Allenes

Hirotsugu Suzuki, Yasuharu Yoshimi, Naoki Hikida, Keita Obata
Advanced Synthesis & Catalysis
Advanced Synthetic Organic Chemistry
article

Amide‐Enabled Reversal of Regioselectivity in Carbonyl‐Substituted Allenes

Hirotsugu Suzuki, Yasuharu Yoshimi, Naoki Hikida, Keita Obata
article en

Abstract

Overriding β‐selective nucleophilic addition to carbonyl‐conjugated π‐systems is a persistent challenge in regioselective synthesis. Here we report that a secondary amide embedded in carbonyl‐substituted allenes enables highly α‐selective acyloxylation with carboxylic acids under rhodium catalysis. The reaction proceeds without external oxidants or auxiliary‐type bidentate directing groups and tolerates a wide range of aromatic, heteroaromatic, aliphatic, and alkenyl carboxylic acids. Control experiments with ketone, ester, and N ‐methyl amide analogs reveal that the secondary amide functionality is essential for productive α‐selective coupling. These results indicate a substrate‐embedded secondary amide strategy for redirecting nucleophilic addition to carbonyl‐substituted allenes.

Advanced Synthesis & CatalysisVol. 368(20)
University of Fukui (JP), Fukui University of Technology (JP)
Openalex Percentile: Top 23%
Advanced Synthetic Organic Chemistry
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Amide‐Enabled Reversal of Regioselectivity in Carbonyl‐Substituted Allenes — Hirotsugu Suzuki, Yasuharu Yoshimi, et al. · Advanced Synthesis & Catalysis (2026) | TGRS Research Map | TGRS