Donor-acceptor (D-A) cyclopropanes are important precursors in the synthesis of complex molecules due to their bidentate character and high reactivity. Among them, cyclopropane-1,1-dicarbonitriles are less commonly reported in modern literature, primarily because of the high reactivity of the nitrile groups and their limited compatibility with metal-catalyzed processes, which is caused by the geometrical constraints imposed by the linear cyano substituents. While the cyano groups can be seen as a limitation, they also offer synthetic versatility by serving as handles for further functionalization. In this work, we performed a cycloaddition reaction with mercaptoacetaldehyde, leading to a new class of DA cyclopropanes bearing a thiazole moiety. This one-pot, two-step transformation requires only a single purification step. The resulting thiazolyl-substituted cyclopropanes were subjected to ring strain-release reactions, showing reactivity comparable to the parent cyclopropane-1,1-dicarbonitriles.
Savini, E.B., Bandieri, E., Pecchini, P., Santarelli, N., Bernardi, L., Fochi, M. (2025). Thiazolylcyanocyclopropanes: Novel Donor–Acceptor Cyclopropanes for Accessing Thiazole-Containing Targets. MOLECULES, 30(18), 1-25 [10.3390/molecules30183767].
Thiazolylcyanocyclopropanes: Novel Donor–Acceptor Cyclopropanes for Accessing Thiazole-Containing Targets
Emanuèl Bruno Savini;Pietro Pecchini;Nicolò Santarelli;Luca Bernardi;Mariafrancesca Fochi
2025
Abstract
Donor-acceptor (D-A) cyclopropanes are important precursors in the synthesis of complex molecules due to their bidentate character and high reactivity. Among them, cyclopropane-1,1-dicarbonitriles are less commonly reported in modern literature, primarily because of the high reactivity of the nitrile groups and their limited compatibility with metal-catalyzed processes, which is caused by the geometrical constraints imposed by the linear cyano substituents. While the cyano groups can be seen as a limitation, they also offer synthetic versatility by serving as handles for further functionalization. In this work, we performed a cycloaddition reaction with mercaptoacetaldehyde, leading to a new class of DA cyclopropanes bearing a thiazole moiety. This one-pot, two-step transformation requires only a single purification step. The resulting thiazolyl-substituted cyclopropanes were subjected to ring strain-release reactions, showing reactivity comparable to the parent cyclopropane-1,1-dicarbonitriles.| File | Dimensione | Formato | |
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