Asymmetric radical NHC organocatalysis–enabled highly enantioselective acylation of inert C(sp 2 )─C(sp 3 ) bonds
- Qing-Zhu Li
- Mei-Hao He
- Peng-Tao Wang
- Long-Hai Hong
- Ting Qi
- Xin-Xin Kou
- Dong-Yang Xiang
- Wan-Cong Liu
- Zi-Jie Xing
- Xiang Zhang
- Jun-Long Li
2026-07-17
The pursuit of high enantioselectivity remains a central challenge in the burgeoning area of radical N -heterocyclic carbene (NHC) catalysis. Moreover, direct functionalizations of unstrained and unpolarized C─C bonds continue to pose a formidable obstacle in organocatalysis. Herein, we disclose an asymmetric NHC organocatalytic platform that achieves highly enantioselective radical acylation of inert C(sp 2 )─C(sp 3 ) bonds. Central to this advance is the development of a previously unknown collection of chiral thiazolium catalysts integrating medium-ring backbones with C 2 -symmetric chiral units, which facilitate the stereoselective acylation of C─C bonds through a Smiles-type rearrangement. This organocatalytic protocol affords more than 70 examples with outstanding yields (up to 99%) and excellent regioselectivity (up to 99:1 rr) and enantioselectivity (up to 99.5:0.5 er) under transition metal–free and light-free conditions. The practicality of this strategy is further underscored by stereo-controlled late-stage functionalization of complex bioactive molecules. Mechanistic insights from combined experimental and computational studies support a radical-mediated catalytic cycle and elucidate the origin of enantioselectivity.