Enantioselective Synthesis of Chiral 3-Substituted Tetrahydroquinolines via a Pd-Catalyzed C–C Cleavage/C–C Coupling Sequence

Abstract A palladium-catalyzed asymmetric synthesis of 3-substituted tetrahydroquinolines (THQs) through a C–C cleavage/C–C coupling sequence has been developed. By employing Pd(OAc)2/Josiphos L7 as the catalyst, an array of chiral tetrahydroquinolines bearing a C3-ketone pendant was afforded in good to excellent yields and enantioselectivities by using 3-(2-bromoaniline)-tethered cyclobutanols as substrates. Control experiments revealed that only cis-substrates were able to participate in the reaction. In addition, several synthetic transformations derived from the ketone moiety were carried out to demonstrate the practical utility of this protocol.

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Publication Details

Journal
Organic Letters
Published
2026-10-05
DOI
https://doi.org/10.1021/acs.orglett.6c03823
Primary Topic
Asymmetric Synthesis and Catalysis
Type
article
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article

Enantioselective Synthesis of Chiral 3-Substituted Tetrahydroquinolines via a Pd-Catalyzed C–C Cleavage/C–C Coupling Sequence

Yi‐Xia Jia, Ren‐Xiao Liang, Xiaojing Liu, Zhen-Ting Mao et al.
Organic Letters
Asymmetric Synthesis and Catalysis
article

Enantioselective Synthesis of Chiral 3-Substituted Tetrahydroquinolines via a Pd-Catalyzed C–C Cleavage/C–C Coupling Sequence

Yi‐Xia Jia, Ren‐Xiao Liang, Xiaojing Liu, Zhen-Ting Mao, Cheng-Yu Li
article en

Abstract

Abstract A palladium-catalyzed asymmetric synthesis of 3-substituted tetrahydroquinolines (THQs) through a C–C cleavage/C–C coupling sequence has been developed. By employing Pd(OAc)2/Josiphos L7 as the catalyst, an array of chiral tetrahydroquinolines bearing a C3-ketone pendant was afforded in good to excellent yields and enantioselectivities by using 3-(2-bromoaniline)-tethered cyclobutanols as substrates. Control experiments revealed that only cis-substrates were able to participate in the reaction. In addition, several synthetic transformations derived from the ketone moiety were carried out to demonstrate the practical utility of this protocol.

Organic Letters
Tianjin University of Technology (CN), Chinese Academy of Sciences (CN), Zhejiang University of Technology (CN)
Openalex Percentile: Top 23%
Asymmetric Synthesis and Catalysis
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