Enantiopure 4‐oxazolin‐2‐ones and 4‐methylene‐2‐oxazolidinones as chiral building blocks in a divergent asymmetric synthesis of heterocycles

Enantiopure 3‐((R)‐ and 3‐((S)‐1‐phenylethyl)‐4‐oxazoline‐2‐ones were evaluated as chiral building blocks for the divergent construction of heterocycles with stereogenic quaternary centers. The N‐(R)‐ or N‐(S)‐1‐phenylethyl group of these compounds proved to be an efficient chiral auxiliary for the...

Ausführliche Beschreibung

Gespeichert in:
Bibliographische Detailangaben
Veröffentlicht in:Chirality (New York, N.Y.) N.Y.), 2019-09, Vol.31 (9), p.719-749
Hauptverfasser: Santoyo, Blanca M., González‐Romero, Carlos, Zárate‐Zárate, Daniel, Hernández‐Benitez, R. Israel, Pelayo, Vanessa, Barrera, Edson, Escalante, Carlos H., Fuentes‐Benites, Aydeé, Martínez‐Morales, Guadalupe, López, Julio, Vázquez, Miguel A., Delgado, Francisco, Jiménez‐Vázquez, Hugo A., Tamariz, Joaquín
Format: Artikel
Sprache:eng
Schlagworte:
Online-Zugang:Volltext
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
Beschreibung
Zusammenfassung:Enantiopure 3‐((R)‐ and 3‐((S)‐1‐phenylethyl)‐4‐oxazoline‐2‐ones were evaluated as chiral building blocks for the divergent construction of heterocycles with stereogenic quaternary centers. The N‐(R)‐ or N‐(S)‐1‐phenylethyl group of these compounds proved to be an efficient chiral auxiliary for the asymmetric induction of the 4‐ and 5‐positions of the 4‐oxazolin‐2‐one ring through thermal and MW‐promoted nucleophilic conjugated addition to Michael acceptors and alkyl halides. The resulting adducts were transformed via a cascade process into fused six‐membered carbo‐ and heterocycles. The structure of the reaction products depended on the electrophiles and reaction conditions used. Alternative isomeric 4‐methylene‐2‐oxazolidinones served as chiral precursors for a versatile and divergent approach to highly substituted cyclic carbamates. DFT quantum calculations showed that the formation of bicyclic pyranyl compounds was generated by a diastereoselective concerted hetero‐Diels‐Alder cycloaddition. The 1‐phenylethyl amino group, incorporated as chiral auxiliary into N‐substituted 4‐oxazolin‐2‐ones and 4‐methylene‐2‐oxazolidinones, proved to be efficient in controlling diastereoselective reactions, such as the hetero‐Diels‐Alder cycloaddition. DFT calculations showed that the latter proceed through a concerted process, being this the key reaction for the synthesis of some chiral heterocycles.
ISSN:0899-0042
1520-636X
DOI:10.1002/chir.23109