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Direct Enantioselective C(sp<sup>3</sup>)–H Acylation for the Synthesis of α-Amino Ketones
193
Citations
77
References
2020
Year
A direct enantioselective acylation of α-amino C(sp<sup>3</sup>)-H bonds with carboxylic acids has been achieved via the merger of transition metal and photoredox catalysis. This straightforward protocol enables cross-coupling of a wide range of carboxylic acids, one class of feedstock chemicals, with readily available <i>N</i>-alkyl benzamides to produce highly valuable α-amino ketones in high enantioselectivities under mild conditions. The synthetic utility of this method is further demonstrated by gram scale synthesis and application to late-stage functionalization. This method provides an unprecedented solution to address the challenging stereocontrol in metallaphotoredox catalysis and C(sp<sup>3</sup>)-H functionalization. Mechanistic studies suggest the α-C(sp<sup>3</sup>)-H bond of the benzamide coupling partner is cleavage by photocatalytically generated bromine radicals to form α-amino alkyl radicals, which subsequently engages in nickel-catalyzed asymmetric acylation.
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