We demonstrate that metal-catalyzed enantioselective benzylation reactions of allylic electrophiles can occur directly from aryl acetic acids. The reaction proceeds via a pathway in which decarboxylation is the terminal event, occurring after stereoselective carbon–carbon bond formation. This mechanistic feature enables enantioselective benzylation without the generation of a highly basic nucleophile. Thus, the process has broad functional group compatibility that would not be possible employing established protocols
We describe herein the asymmetric synthesis of α-allyl carboxylic acids containing an α-quaternary s...
Development of novel synthetic methods for the efficient generation of new carbon-carbon bonds is a ...
The preparation of all possible stereoisomers of a given chiral molecule bearing multiple stereocent...
The stability and wide availability of carboxylic acids make them valuable reagents in chemical synt...
A palladium-catalyzed decarboxylative coupling of enol carbonates with diarylmethyl electrophiles th...
The transmetalation between boron and zinc is of great importance for application in organic synthes...
The direct, catalytic, asymmetric α-functionalization of acyclic esters constitutes a significant ch...
International audiencePdII‐catalyzed decarboxylative Heck coupling of α‐alkoxyacrylates with (hetero...
Watson, Mary P.During the last half century, transition metal-catalyzed cross-coupling reactions hav...
A method for the catalytic enantioselective diarylation of alkenes is presented. The method allowed ...
Enantiopure carbonyl compounds bearing tetrasubstituted α-stereogenic centers are versatile building...
We report the enantioselective functionalization of allylic C–H bonds in terminal alkenes by a strat...
Ni-catalyzed C(sp3)–O bond activation provides a useful approach to synthesize enantioenriched prod...
The transmetal-catalyzed enantioselective cross-coupling reaction of secondary benzylic electrophile...
Enantioenriched benzyl esters of propiolic acids undergo highly stereospecific decarboxylative coupl...
We describe herein the asymmetric synthesis of α-allyl carboxylic acids containing an α-quaternary s...
Development of novel synthetic methods for the efficient generation of new carbon-carbon bonds is a ...
The preparation of all possible stereoisomers of a given chiral molecule bearing multiple stereocent...
The stability and wide availability of carboxylic acids make them valuable reagents in chemical synt...
A palladium-catalyzed decarboxylative coupling of enol carbonates with diarylmethyl electrophiles th...
The transmetalation between boron and zinc is of great importance for application in organic synthes...
The direct, catalytic, asymmetric α-functionalization of acyclic esters constitutes a significant ch...
International audiencePdII‐catalyzed decarboxylative Heck coupling of α‐alkoxyacrylates with (hetero...
Watson, Mary P.During the last half century, transition metal-catalyzed cross-coupling reactions hav...
A method for the catalytic enantioselective diarylation of alkenes is presented. The method allowed ...
Enantiopure carbonyl compounds bearing tetrasubstituted α-stereogenic centers are versatile building...
We report the enantioselective functionalization of allylic C–H bonds in terminal alkenes by a strat...
Ni-catalyzed C(sp3)–O bond activation provides a useful approach to synthesize enantioenriched prod...
The transmetal-catalyzed enantioselective cross-coupling reaction of secondary benzylic electrophile...
Enantioenriched benzyl esters of propiolic acids undergo highly stereospecific decarboxylative coupl...
We describe herein the asymmetric synthesis of α-allyl carboxylic acids containing an α-quaternary s...
Development of novel synthetic methods for the efficient generation of new carbon-carbon bonds is a ...
The preparation of all possible stereoisomers of a given chiral molecule bearing multiple stereocent...