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Title: | Substrate-Controlled Domino Reaction of N-Sulfonyl Ketimines with 2-Aroyl-1-chlorocyclopropanecarboxylates: Access to Cyclopenta[c]chromenes and Benzo[f]cyclopenta[d][1,2]thiazepine Dioxides |
Authors: | Prakash, Meher Lodhi, Rajni Samanta, Sampak |
Keywords: | Hydrogenation;Scaffolds;Catalytic hydrogenation;Chemical yields;Diastereomers;Domino reactions;Donor-acceptor cyclopropanes;Eco-friendly;Ring-expansion reaction;Special class;Reaction kinetics;2 aroyl 1 chlorocyclopropanecarboxylate derovative;benzo[f]cyclopenta[d][1,2]thiazepine dioxide derivative;carboxylic acid derivative;chromene derivative;cyclopenta[c]chromene derivative;cyclopropane;ketamine;n sulfonyl ketimine derivative;unclassified drug;Article;catalysis;chemical reaction;diastereoisomer;hydrogenation;substitution reaction;synthesis |
Issue Date: | 2021 |
Publisher: | American Chemical Society |
Citation: | Prakash, M., Lodhi, R., & Samanta, S. (2021). Substrate-controlled domino reaction of N-sulfonyl ketimines with 2-aroyl-1-chlorocyclopropanecarboxylates: Access to cyclopenta[c]chromenes and benzo[f]cyclopenta[d][1,2]thiazepine dioxides. Journal of Organic Chemistry, 86(9), 6721-6733. doi:10.1021/acs.joc.1c00459 |
Abstract: | An unprecedented substrate-controlled annulation method for the synthesis of fascinating classes of angularly fused cyclopenta[c]chromenes and benzo[f]cyclopenta[d][1,2]thiazepine 5,5-dioxide derivatives in good to high chemical yields is reported. This Michael-initiated ring-expansion reaction would enable two C-C and one C-O or C-N bonds by a judicious choice of carbonucleophiles, either 4-alkyl or 3-alkyl-substituted N-sulfonyl ketimines, respectively, with a series of donor-acceptor cyclopropane scaffolds as 4C sources promoted by DBU. Moreover, this eco-friendly method is mild enough to protect different kinds of functionalities. Importantly, the prepared fused fulvene scaffolds were smoothly transformed into a special class of hexahydrocyclopenta[c]chromenes as single cis-cis-cis-cis diastereomers in excellent yields by a simple catalytic hydrogenation reaction. © 2021 American Chemical Society. |
URI: | https://doi.org/10.1021/acs.joc.1c00459 https://dspace.iiti.ac.in/handle/123456789/8706 |
ISSN: | 0022-3263 |
Type of Material: | Journal Article |
Appears in Collections: | Department of Chemistry |
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