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Enantiopure ,-acetals represent a vital class of sulfur-containing compounds commonly found in natural products and pharmaceutical agents. We herein report the first chiral phosphoric acid-catalyzed, highly -chemo, site-, and enantioselective para-addition of anilines to cyclic thioimidates. This protocol provides a new approach for the preparation of chiral ,-acetal-containing quaternary carbon stereogenic centers, achieving high yields with excellent enantioselectivities (up to 96% yield and 99% ee). The practicality of the method was demonstrated by large-scale reaction and product transformation as well as the late-stage functionalization of complex biologically active molecules. Additionally, several control experiments were performed to highlight a plausible stereocontrol model.
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http://dx.doi.org/10.1021/acs.joc.5c00929 | DOI Listing |
J Org Chem
August 2025
Innovation Research Center of Chiral Drugs, Institute for Advanced Study, Chengdu University, Chengdu 610106, China.
Enantiopure ,-acetals represent a vital class of sulfur-containing compounds commonly found in natural products and pharmaceutical agents. We herein report the first chiral phosphoric acid-catalyzed, highly -chemo, site-, and enantioselective para-addition of anilines to cyclic thioimidates. This protocol provides a new approach for the preparation of chiral ,-acetal-containing quaternary carbon stereogenic centers, achieving high yields with excellent enantioselectivities (up to 96% yield and 99% ee).
View Article and Find Full Text PDFThe growing importance of axially chiral architectures in different scientific domains has unveiled shortcomings in terms of efficient synthetic access and skeletal variety. This account describes our strategies in answering these challenges within the organocatalytic context where the emergence of bifunctional catalysts such as chiral phosphoric acids (CPAs) has proven invaluable in controlling the sense of axial chirality. The wide occurrence of bi(hetero)aryl skeletons in privileged structures constitutes a strong motivation to devise more effective arylation methods.
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