The formidable challenges of controlling site-selectivity, enantioselectivity, and product chemoselectivity make asymmetric C-H oxidation a generally unsolved problem for nonenzymatic systems. Discrimination between the two enantiotopic C-H bonds of an unactivated methylenic group is particularly demanding and so far unprecedented, given the similarity between their environments and the facile overoxidation of the initially formed hydroxylation product. Here we show that a Mn-catalyzed C-H oxidation directed by carboxylic acids can overcome these challenges to yield γ-lactones in high enantiomeric excess (up to 99%) using hydrogen peroxide as oxidant and a Brønsted acid additive under mild conditions and short reaction times. Coordination o...
Chiral oxygenated aliphatic moieties are recurrent in biological and pharmaceutically relevant molec...
Chiral oxygenated aliphatic moieties are recurrent in biological and pharmaceutically relevant molec...
Monosubstituted cycloalkanes undergo regio- and enantioselective aliphatic C−H oxidation with H2O2 c...
The formidable challenges of controlling site-selectivity, enantioselectivity, and product chemosele...
The formidable challenges of controlling siteselectivity, enantioselectivity, and product chemoselec...
The formidable challenges of controlling siteselectivity, enantioselectivity, and product chemoselec...
The formidable challenges of controlling siteselectivity, enantioselectivity, and product chemoselec...
The formidable challenges of controlling siteselectivity, enantioselectivity, and product chemoselec...
The formidable challenges of controlling site-selectivity, enantioselectivity, and product chemosele...
The formidable challenges of controlling site-selectivity, enantioselectivity, and product chemosele...
The formidable challenges of controlling site-selectivity, enantioselectivity, and product chemosele...
Reactions that enable selective functionalization of strong aliphatic C-H bonds open new synthetic p...
Reactions that enable selective functionalization of strong aliphatic C-H bonds open new synthetic p...
Reactions that enable selective functionalization of strong aliphatic C-H bonds open new synthetic p...
Reactions that enable selective functionalization of strong aliphatic C-H bonds open new synthetic p...
Chiral oxygenated aliphatic moieties are recurrent in biological and pharmaceutically relevant molec...
Chiral oxygenated aliphatic moieties are recurrent in biological and pharmaceutically relevant molec...
Monosubstituted cycloalkanes undergo regio- and enantioselective aliphatic C−H oxidation with H2O2 c...
The formidable challenges of controlling site-selectivity, enantioselectivity, and product chemosele...
The formidable challenges of controlling siteselectivity, enantioselectivity, and product chemoselec...
The formidable challenges of controlling siteselectivity, enantioselectivity, and product chemoselec...
The formidable challenges of controlling siteselectivity, enantioselectivity, and product chemoselec...
The formidable challenges of controlling siteselectivity, enantioselectivity, and product chemoselec...
The formidable challenges of controlling site-selectivity, enantioselectivity, and product chemosele...
The formidable challenges of controlling site-selectivity, enantioselectivity, and product chemosele...
The formidable challenges of controlling site-selectivity, enantioselectivity, and product chemosele...
Reactions that enable selective functionalization of strong aliphatic C-H bonds open new synthetic p...
Reactions that enable selective functionalization of strong aliphatic C-H bonds open new synthetic p...
Reactions that enable selective functionalization of strong aliphatic C-H bonds open new synthetic p...
Reactions that enable selective functionalization of strong aliphatic C-H bonds open new synthetic p...
Chiral oxygenated aliphatic moieties are recurrent in biological and pharmaceutically relevant molec...
Chiral oxygenated aliphatic moieties are recurrent in biological and pharmaceutically relevant molec...
Monosubstituted cycloalkanes undergo regio- and enantioselective aliphatic C−H oxidation with H2O2 c...