Intermolecular functionalizations of aliphatic C–H bonds offer unique strategies for the synthesis and late-stage derivatization of complex molecules, but the chemical space accessible remains limited. Herein, we report a transformation significantly expanding the chemotypes accessible via C–H functionalization. The C–H xanthylation proceeds in useful chemical yields with the substrate as the limiting reagent using blue LEDs and an easily prepared <i>N</i>-xanthylamide. The late-stage functionalizations of complex molecules occur with high levels of site selectivity, and a variety of common functionality is tolerated in the reaction. This approach capitalizes on the versatility of the xanthate functional group via both polar and radical man...
International audienceThe xanthate-mediated addition of tertiary alkyl radicals to heteroarenes enab...
Transformations that selectively functionalize aliphatic C–H bonds hold significant promise to strea...
The aim of this thesis was to demonstrate the potential of xanthate radical chemistry, in the functi...
Visible light-mediated site-specific C(sp3)-H xanthylation of amides has been accomplished using N-x...
The site-selective transformation of unactivated, aliphatic C–H bonds is a challenging goal to achie...
I. Strategies for Intermolecular Functionalization of Unactivated Aliphatic C–H Bonds Aliphati...
International audienceThe use of BEt3·H2O has allowed the chemoselective reductive dexanthylation in...
Access to the γ-amino-β,γ-unsaturated acyl scaffold was established by applying xanthate chemistry t...
A modular platform based on free-radical xanthate addition to alkenes enables access to a large seri...
Synthetic transformations that functionalize unactivated aliphatic C–H bonds in an intermolecular fa...
The use of BEt<sub>3</sub>·H<sub>2</sub>O has allowed the chemoselective reductive dexanthylation in...
Direct functionalization of natural products is important for studying the structure-activity and st...
Dans cette thèse, nous avons entrepris une aventure pour découvrir une application plus large de la ...
Decarboxylative functionalization via hydrogen atom transfer offers an attractive alternative to sta...
The many strategies for functionalizing C=C and C–H bonds that have evolved in Nature have captivate...
International audienceThe xanthate-mediated addition of tertiary alkyl radicals to heteroarenes enab...
Transformations that selectively functionalize aliphatic C–H bonds hold significant promise to strea...
The aim of this thesis was to demonstrate the potential of xanthate radical chemistry, in the functi...
Visible light-mediated site-specific C(sp3)-H xanthylation of amides has been accomplished using N-x...
The site-selective transformation of unactivated, aliphatic C–H bonds is a challenging goal to achie...
I. Strategies for Intermolecular Functionalization of Unactivated Aliphatic C–H Bonds Aliphati...
International audienceThe use of BEt3·H2O has allowed the chemoselective reductive dexanthylation in...
Access to the γ-amino-β,γ-unsaturated acyl scaffold was established by applying xanthate chemistry t...
A modular platform based on free-radical xanthate addition to alkenes enables access to a large seri...
Synthetic transformations that functionalize unactivated aliphatic C–H bonds in an intermolecular fa...
The use of BEt<sub>3</sub>·H<sub>2</sub>O has allowed the chemoselective reductive dexanthylation in...
Direct functionalization of natural products is important for studying the structure-activity and st...
Dans cette thèse, nous avons entrepris une aventure pour découvrir une application plus large de la ...
Decarboxylative functionalization via hydrogen atom transfer offers an attractive alternative to sta...
The many strategies for functionalizing C=C and C–H bonds that have evolved in Nature have captivate...
International audienceThe xanthate-mediated addition of tertiary alkyl radicals to heteroarenes enab...
Transformations that selectively functionalize aliphatic C–H bonds hold significant promise to strea...
The aim of this thesis was to demonstrate the potential of xanthate radical chemistry, in the functi...