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Stereo- and Enantioselective Addition of Organolithiums to 2-Oxazolinylazetidines as a Synthetic Route to 2-Acylazetidines

Authors :
Marco Colella
Claudia Carlucci
Pantaleo Musci
Luisa Pisano
Renzo Luisi
Angela Altomare
Flavio Fanelli
Leonardo Degennaro
Source :
Frontiers in Chemistry, Vol 7 (2019), Frontiers in Chemistry 7:614 (2019). doi:10.3389/fchem.2019.00614, info:cnr-pdr/source/autori:Musci P.; Colella M.; Fanelli F.; Altomare A.; Pisano L.; Carlucci C.; Luisi R.; Degennaro L./titolo:Stereo-and Enantioselective Addition of Organolithiums to 2-Oxazolinylazetidines as a Synthetic Route to 2-Acylazetidines/doi:10.3389%2Ffchem.2019.00614/rivista:Frontiers in Chemistry/anno:2019/pagina_da:/pagina_a:/intervallo_pagine:/volume:7:614, Frontiers in Chemistry
Publication Year :
2019
Publisher :
Frontiers Media SA, 2019.

Abstract

A new synthetic route to N-alkyl-2-acylazetidines was developed through a highly stereoselective addition of organolithiums to N-alkyl-2‐oxazolinylazetidines followed by acidic hydrolysis of the resulting oxazolidine intermediates. This study revealed an unusual reactivity of the C=N bond of the oxazoline group when reacted with an organolithiums in a non-polar solvent such as toluene. The observed reactivity has been explained considering the role of the nitrogen lone pair of the azetidine ring as well as of the oxazolinyl group in promoting a complexation of the organolithium, thus ending up with the addition to the C=N double bond. The high level of stereoselectivity in this addition is supported by DFT calculations and NMR investigations, and a model is proposed for the formation of the oxazolidine intermediates, that have been isolated and fully characterized. Upon acidic conditions, the oxazolidine moieties were readily converted into 2-acylazetidines. This synthetic approach has been applied for the preparation of highly enantioenriched 2-acylazetidines starting from chiral not racemic N‐alkyl-2‐oxazolinylazetidines.

Details

Language :
English
ISSN :
22962646
Volume :
7
Database :
OpenAIRE
Journal :
Frontiers in Chemistry
Accession number :
edsair.doi.dedup.....10b0a1b4a36b02a44e1935e5d83f916b
Full Text :
https://doi.org/10.3389/fchem.2019.00614