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Rhodium-catalyzed atroposelective access to trisubstituted olefins via C-H bond olefination of diverse arenes.


ABSTRACT: The atroposelective synthesis of axially chiral acyclic olefins remains a daunting challenge due to their relatively lower racemization barriers, especially for trisubstituted ones. In this work, atroposelective C-H olefination has been realized for synthesis of open-chain trisubstituted olefins via C-H activation of two classes of (hetero)arenes in the coupling with sterically hindered alkynes. The employment of phenyl N-methoxycarbamates as arene reagents afforded phenol-tethered olefins, with the carbamate being a traceless directing group. The olefination of N-methoxy-2-indolylcarboxamides afforded the corresponding chiral olefin by circumventing the redox-neutral [4 + 2] annulation. The reactions proceeded with excellent Z/E selectivity, chemoselectivity, regioselectivity, and enantioselectivity in both hydroarylation systems.

SUBMITTER: Zhu X 

PROVIDER: S-EPMC10370552 | biostudies-literature | 2023 Jul

REPOSITORIES: biostudies-literature

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Rhodium-catalyzed atroposelective access to trisubstituted olefins <i>via</i> C-H bond olefination of diverse arenes.

Zhu Xiaohan X   Mi Ruijie R   Yin Jie J   Wang Fen F   Li Xingwei X  

Chemical science 20230703 29


The atroposelective synthesis of axially chiral acyclic olefins remains a daunting challenge due to their relatively lower racemization barriers, especially for trisubstituted ones. In this work, atroposelective C-H olefination has been realized for synthesis of open-chain trisubstituted olefins <i>via</i> C-H activation of two classes of (hetero)arenes in the coupling with sterically hindered alkynes. The employment of phenyl <i>N</i>-methoxycarbamates as arene reagents afforded phenol-tethered  ...[more]

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