Controlling the Reactivity of 1,3-Diacyl-2-gold Carbenes: [3+2] Annulation with External Imines over Wolff Rearrangement

Abstract Novel [3+2] annulations between imines and 1,3-diacyl gold carbenes have been developed to provide 2-acyl-3-aminopyrrole derivatives efficiently. Mechanistic studies suggest that the reaction is initiated by nucleophilic addition of the imine to the 1,3-diacyl gold carbene, generating a gold carbene–imine intermediate that undergoes intramolecular carbocyclization involving the three-carbon 1,3-dicarbonyl unit and the C═N bond to furnish the pyrrole framework. A competitive reaction in this gold catalysis is the Wolff reaction of the 1,3-diacyl gold carbenes when ynone substrates comprise bulky ketones. Density functional theory (DFT) calculations for the reaction of species 1a with 2a reveal that the [3+2] annulation pathway is energetically more favorable than the competing Wolff rearrangement.

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Publication Details

Journal
Organic Letters
Published
2026-09-29
DOI
https://doi.org/10.1021/acs.orglett.6c03682
Primary Topic
Catalytic Alkyne Reactions
Type
article
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article

Controlling the Reactivity of 1,3-Diacyl-2-gold Carbenes: [3+2] Annulation with External Imines over Wolff Rearrangement

Vikas Ashokrao Sadaphal, Hsin‐Ru Wu, Rai‐Shung Liu, Satish Bhausaheb Dawange et al.
Organic Letters
Catalytic Alkyne Reactions
article

Controlling the Reactivity of 1,3-Diacyl-2-gold Carbenes: [3+2] Annulation with External Imines over Wolff Rearrangement

Vikas Ashokrao Sadaphal, Hsin‐Ru Wu, Rai‐Shung Liu, Satish Bhausaheb Dawange, Pei-Qin Liao
article en

Abstract

Abstract Novel [3+2] annulations between imines and 1,3-diacyl gold carbenes have been developed to provide 2-acyl-3-aminopyrrole derivatives efficiently. Mechanistic studies suggest that the reaction is initiated by nucleophilic addition of the imine to the 1,3-diacyl gold carbene, generating a gold carbene–imine intermediate that undergoes intramolecular carbocyclization involving the three-carbon 1,3-dicarbonyl unit and the C═N bond to furnish the pyrrole framework. A competitive reaction in this gold catalysis is the Wolff reaction of the 1,3-diacyl gold carbenes when ynone substrates comprise bulky ketones. Density functional theory (DFT) calculations for the reaction of species 1a with 2a reveal that the [3+2] annulation pathway is energetically more favorable than the competing Wolff rearrangement.

Organic Letters
National Tsing Hua University (TW)
Openalex Percentile: Top 22%
Catalytic Alkyne Reactions
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