Computational Exploration of Concerted and Zwitterionic Mechanisms of Diels-Alder Reactions between 1,2,3-Triazines and Enamines and Acceleration by Hydrogen-Bonding Solvents.

The mechanisms of Diels−Alder reactions between 1,2,3- triazines and enamines have been explored with density functional theory computations. The focus of this work is on the origins of the different reactivities and mechanisms induced by substituents and by hexafluoroisopropanol (HFIP) solvent. T...

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Detalles Bibliográficos
Publicado en:Journal of the American Chemical Society Vol. 139; no. 50; pp. 18213 - 18222
Autores principales: Yun-Fang Yang, Peiyuan Yu, Houk, K. N.
Formato: Artículo
Publicado: American Chemical Society 12/20/2017
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Acceso en línea:Ver este registro en EBSCOhost
Descripción
Sumario:The mechanisms of Diels−Alder reactions between 1,2,3- triazines and enamines have been explored with density functional theory computations. The focus of this work is on the origins of the different reactivities and mechanisms induced by substituents and by hexafluoroisopropanol (HFIP) solvent. These inverse electron-demand Diels−Alder reactions of triazines have wide applications in bioorthogonal chemistry and natural product synthesis. Both concerted and stepwise cycloadditions are predicted, depending on the nature of substituents and solvents. The nature of zwitterionic intermediates and the mechanism by which HFIP accelerates cycloadditions with enamines are characterized. Our results show the delicate nature of the concerted versus stepwise mechanism of inverse electron-demand Diels−Alder reactions of 1,2,3-triazines, and that these mechanisms can be altered by electron-withdrawing substituents and hydrogen-bonding solvents.