We report the first example of cooperative catalysis by DBU and CuCl2, which allows the carboxylation of homopropargylic amines to high value added 6-methylene-1,3-oxazin-2-ones. This reaction also represents the first efficient method for the catalytic incorporation of CO2 into an acyclic substrate to give oxazinones. DFT calculations are in agreement with a mechanism involving: a) deprotonation of the substrate by DBU; b) CO2 capture with formation of a copper carbamate; c) 6-exo-dig cyclization through intramolecular triple bond insertion; and d) protonolysis, with regeneration of DBU and CuCl2 catalysts. The structure of a representative product has been confirmed by XDR analysis. (C) 2020 Elsevier Inc. All rights reserved.
Unprecedented cooperative DBU-CuCl2 catalysis for the incorporation of carbon dioxide into homopropargylic amines leading to 6-methylene-1,3-oxazin-2-ones
Cuocci Corrado;
2020
Abstract
We report the first example of cooperative catalysis by DBU and CuCl2, which allows the carboxylation of homopropargylic amines to high value added 6-methylene-1,3-oxazin-2-ones. This reaction also represents the first efficient method for the catalytic incorporation of CO2 into an acyclic substrate to give oxazinones. DFT calculations are in agreement with a mechanism involving: a) deprotonation of the substrate by DBU; b) CO2 capture with formation of a copper carbamate; c) 6-exo-dig cyclization through intramolecular triple bond insertion; and d) protonolysis, with regeneration of DBU and CuCl2 catalysts. The structure of a representative product has been confirmed by XDR analysis. (C) 2020 Elsevier Inc. All rights reserved.| File | Dimensione | Formato | |
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