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Catalytic Enantioselective Synthesis of N-C Axially Chiral N-(2,6-Disubstituted-phenyl)sulfonamides through Chiral Pd-Catalyzed N-Allylation.


ABSTRACT: Recently, catalytic enantioselective syntheses of N-C axially chiral compounds have been reported by many groups. Most N-C axially chiral compounds prepared through a catalytic asymmetric reaction possess carboxamide or nitrogen-containing aromatic heterocycle skeletons. On the other hand, although N-C axially chiral sulfonamide derivatives are known, their catalytic enantioselective synthesis is relatively underexplored. We found that the reaction (Tsuji-Trost allylation) of allyl acetate with secondary sulfonamides bearing a 2-arylethynyl-6-methylphenyl group on the nitrogen atom proceeds with good enantioselectivity (up to 92% ee) in the presence of (S,S)-Trost ligand-(allyl-PdCl)2 catalyst, affording rotationally stable N-C axially chiral N-allylated sulfonamides. Furthermore, the absolute stereochemistry of the major enantiomer was determined by X-ray single crystal structural analysis and the origin of the enantioselectivity was considered.

SUBMITTER: Fukasawa S 

PROVIDER: S-EPMC9698006 | biostudies-literature | 2022 Nov

REPOSITORIES: biostudies-literature

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Catalytic Enantioselective Synthesis of N-C Axially Chiral <i>N</i>-(2,6-Disubstituted-phenyl)sulfonamides through Chiral Pd-Catalyzed <i>N</i>-Allylation.

Fukasawa Sota S   Toyoda Tatsuya T   Kasahara Ryohei R   Nakamura Chisato C   Kikuchi Yuuki Y   Hori Akiko A   Richards Gary J GJ   Kitagawa Osamu O  

Molecules (Basel, Switzerland) 20221113 22


Recently, catalytic enantioselective syntheses of N-C axially chiral compounds have been reported by many groups. Most N-C axially chiral compounds prepared through a catalytic asymmetric reaction possess carboxamide or nitrogen-containing aromatic heterocycle skeletons. On the other hand, although N-C axially chiral sulfonamide derivatives are known, their catalytic enantioselective synthesis is relatively underexplored. We found that the reaction (Tsuji-Trost allylation) of allyl acetate with  ...[more]

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