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1.
Org Biomol Chem ; 21(46): 9200-9209, 2023 Nov 29.
Article in English | MEDLINE | ID: mdl-37960944

ABSTRACT

A formal [4 + 2]-cycloaddition reaction of N-alkoxy acrylamides and acyl isothiocyanates was developed via a Lewis base-catalyzed cascade aza-nucleophilic addition/thio-Michael addition process under mild conditions. This study provides a facile approach for preparing 2-imino-1,3-thiazinone derivatives in moderate to excellent yields and enriches the field of heterocyclic acrylamide chemistry. The reported method features metal-free reaction conditions, high atom economy, and easy operation. Moreover, the reaction was successfully scaled up and derivatization reactions were successfully performed.

2.
J Org Chem ; 88(22): 15805-15816, 2023 Nov 17.
Article in English | MEDLINE | ID: mdl-37906181

ABSTRACT

An Et3N-catalyzed cascade [3 + 2]-annulation of ß-oxo-acrylamides with cyclic N-sulfonyl ketimines or sulfamate-derived imines is developed under mild reaction conditions, which provides a concise and efficient route to access valuable sultam- or sulfamidate-fused imidazolidinone derivatives in good to excellent yields (80-95% yields) with excellent diastereoselectivities (>20:1 drs). The current protocol features atom economy, a transition-metal-free process, and broad functional group tolerance. Moreover, the asymmetric variant of the [3 + 2]-cycloaddition reaction was achieved in the presence of diphenylethanediamine or quinine-based bifunctional squaramide organocatalysts C-1 and C-11, giving the corresponding chiral polycyclic imidazolidinones in 68-90% yields with 25-94% ees and >20:1 drs in all cases.

3.
Org Biomol Chem ; 21(11): 2295-2300, 2023 Mar 15.
Article in English | MEDLINE | ID: mdl-36825465

ABSTRACT

Lewis base-catalyzed cascade nucleophilic/aza-Michael addition reaction of N-alkoxy ß-oxo-acrylamides with isocyanates has been developed to afford various highly functionalized hydantoin derivatives in 80-98% yields under mild reaction conditions. The intriguing features of this method include metal-free reaction conditions, low catalyst loading, broad substrate scope and short reaction time.

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