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Mechanistic Insights into Annulation of Arylidene‐Δ2‐Pyrrolin‐4‐Ones by Cinchona Squaramide‐Based Organocatalysts.

Authors :
Ciber, Luka
Ričko, Sebastijan
Gregorc, Jure
Požgan, Franc
Svete, Jurij
Brodnik, Helena
Štefane, Bogdan
Grošelj, Uroš
Source :
Advanced Synthesis & Catalysis. Mar2022, Vol. 364 Issue 5, p980-993. 14p.
Publication Year :
2022

Abstract

Arylidene‐Δ2‐pyrrolin‐4‐ones undergo organocatalyzed annulation with malononitrile, furnishing dihydropyrano[3,2‐b]pyrroles (18 examples, 0–77% ee in dichloromethane, 11–44% ee in methanol). The products could be enantiomerically enriched by trituration (11 examples, 95–99% ee). Enantioselectivity was dependent on the nature of the substrate and the conformation of the catalyst, which in turn was solvent‐controlled. The reaction mechanism, which included two pseudo‐enantiomeric organocatalyst conformations, was investigated by experimental and quantum chemical methods. The reaction mechanism consists of Michael addition reaction step followed by 6‐exo‐dig annulation, which was found to be the rate determining step. Additionally, it was identified that the preferred reaction pathway follows the model originally proposed by Pápai et al. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
16154150
Volume :
364
Issue :
5
Database :
Academic Search Index
Journal :
Advanced Synthesis & Catalysis
Publication Type :
Academic Journal
Accession number :
155485322
Full Text :
https://doi.org/10.1002/adsc.202101369