Zi-Yu Zhang, Yuxin Ouyang, Tao Zhang, Jin-Quan Yu
Construction of α-chiral centers via enantioselective C(sp 3 )–H activation of the isobutyric acid scaffold has emerged as a new chiral technology. However, this approach has not been compatible with the presence of α-fluorine, which prevented the access to fluorine-bearing α-chiral centers which are highly valuable in drug discovery. Here, we report a palladium-catalyzed asymmetric β-C(sp 3 )–H activation of the gem -dimethyl motif, followed by a dyotropic rearrangement that installs fluoro and aryl groups at the α- and β-positions, respectively. Using a bifunctional chiral monoprotected amino sulfonamide (MPASA) ligand, this method affords chiral tertiary fluorides with high reactivity and enantioselectivity, enabling access to desirable motifs in drug discovery.