Diastereoselective Synthesis of N-Heterocycle Substituted Cyclobutanes via Michael Addition onto Cyclobutenes
Herein, we present a method for the diastereoselective synthesis of N-heterocycle-substituted cyclobutanes from commercially available bromocyclobutanes. This method enables the efficient formation of various heterocyclic aminocyclobutane esters and amides using simple reagents. Notably, N-nucleophiles such as imidazoles, azoles, and nucleobase derivatives were successfully incorporated, enhancing the chemical diversity of small ring building blocks for medicinal chemistry applications.
CEJ2024_e202403986_GreenAccess.pdf
Main Document
Accepted version
openaccess
CC BY
8.09 MB
Adobe PDF
c38337a64c1c288795ecfa3e14b03859
CEJ2024_e202403986_preprint+.pdf
Main Document
Submitted version (Preprint)
openaccess
CC BY
6.78 MB
Adobe PDF
5f6fb1afeb0bcb17d8bae9df07c5c71f