Rhodium-Catalyzed Asymmetric Hydroselenation of 1‑Alkynylindoles for Atroposelective Synthesis of Vinyl Selenoethers

Catalytic asymmetric hydrofunctionalization of π-bonds has been extensively studied, but the asymmetric hydrofunctionalization of alkynes that affords atropoisometric products remains heavily underexplored. We herein report [Rh­(COD)­OAc]2/Mg­(NTf2)2-catayzed highly atroposelective hydroselenation o...

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Veröffentlicht in:ACS catalysis 2024-09, Vol.14 (17), p.13055-13064
Hauptverfasser: Kang, Yulong, Wang, Fen, Li, Xingwei
Format: Artikel
Sprache:eng
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Zusammenfassung:Catalytic asymmetric hydrofunctionalization of π-bonds has been extensively studied, but the asymmetric hydrofunctionalization of alkynes that affords atropoisometric products remains heavily underexplored. We herein report [Rh­(COD)­OAc]2/Mg­(NTf2)2-catayzed highly atroposelective hydroselenation of two classes of 1-alkynylindoles using selenophenols, where the Mg­(II) salt both activates the Rh catalyst and provides a key NTf2 anion essential for the catalytic activity and enantioselectivity, affording C–N axially chiral trisubstituted olefins that bear a relatively low racemization barrier (ΔG ‡ ∼ 27 kcal/mol). The catalytic system features high activity, mild reaction conditions, good functional group tolerance, and high regio-, (E)-, and enantioselectivity. The selenoether moiety in the product framework can be readily functionalized to give synthetically useful products.
ISSN:2155-5435
2155-5435
DOI:10.1021/acscatal.4c03710