Diastereodivergent synthesis of enantioenriched α,β-disubstituted-γ-butyrolactones via cooperative N-heterocyclic carbene/Ir catalysis

The stereodivergent synthesis of natural product frameworks via a single transformation using simple starting materials is a significant challenge. The prevalence of γ-butyrolactones in biologically active natural products has long motivated the development of enantioselective strategies towards the...

Verfasser: Singha, Santanu
Serrano, Eloisa
Mondal, Shobhan
Daniliuc, Constantin Gabriel
Glorius, Frank
Dokumenttypen:Artikel
Medientypen:Text
Erscheinungsdatum:2020
Publikation in MIAMI:08.04.2020
Datum der letzten Änderung:30.11.2022
Angaben zur Ausgabe:[Electronic ed.]
Schlagwörter:Asymmetric catalysis; Homogeneous catalysis; Synthetic chemistry methodology; Organocatalysis
Fachgebiet (DDC):540: Chemie
Lizenz:InC 1.0
Sprache:English
Anmerkungen:Supplementary information is available in the published version of the paper: https://doi.org/10.1038/s41929-019-0387-3
This document is the author’s final version of a published work that appeared in final form in Nature Catalysis (ISSN 2520-1158) after technical editing by the publisher. To access the final edited and published work, see https://doi.org/10.1038/s41929-019-0387-3
Format:PDF-Dokument
URN:urn:nbn:de:hbz:6-81169707953
Permalink:https://nbn-resolving.de/urn:nbn:de:hbz:6-81169707953
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Onlinezugriff:natcatal_2020_3_48-54.pdf

The stereodivergent synthesis of natural product frameworks via a single transformation using simple starting materials is a significant challenge. The prevalence of γ-butyrolactones in biologically active natural products has long motivated the development of enantioselective strategies towards their synthesis. Herein, we report an enantio- and diastereodivergent [3+2] annulation reaction for the synthesis of α,β-disubstituted γ-butyrolactones through cooperative N-heterocyclic carbene organocatalysis and iridium catalysis. This method overcomes the challenges of merging N-heterocyclic carbene organocatalysis with iridium catalysis by the appropriate choice of ligands. The use of two chiral catalysts allowed control over the relative and absolute configuration of the two formed stereocentres, thereby providing selective access to all four possible stereoisomers of the γ-lactone products. The transformation could be extended to the synthesis of δ-lactams via [4+2] annulation. The synthetic utility of this methodology was illustrated in the concise synthesis of the naturally occurring lignan (−)-hinokinin.