Abstract
A visible-light-induced photoredox-catalyzed regioselective and stereoselective C(sp2)–H amination of enamides with bench-stable and easily accessible N-aminopyridium salts is developed, affording synthetically and biologically prominent vicinal 1,2-diamine scaffolds with broad substrate scope and excellent functional group compatibility. The transformation proceeded through a radical pathway involving the Giese addition of the relatively electrophilic N-centered sulfonamidyl radical species to nucleophilic β-olefinic position of enamides followed by the ensuing single electron oxidation and β-H elimination, delivering geometrically-defined Z-configured β-sulfonamidylated enamides. The operational simplicity, environmental friendliness and cost efficiency of this methodology allowed it to pave a new avenue to enrich the arsenal of synthetically crucial functionalized enamides and their related derivatives.
Original language | English |
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Pages (from-to) | 2235-2242 |
Number of pages | 8 |
Journal | Chinese Journal of Chemistry |
Volume | 42 |
Issue number | 18 |
DOIs | |
State | Published - 15 Sep 2024 |
Keywords
- Amination
- Enamides
- Metal-free
- Photoredox catalysis
- Regioselective
- Stereoselective