Ligand-enabled enantio- and site-selective remote C–H arylation of 2-(2-phenpropyl)pyridine derivatives

Abstract

The great potential of transition metal-catalyzed C–H functionalization lies in its ability to selectively target specific C–H bonds in complex molecules. Therefore, the development of enantio- and site-selective C–H functionalization is a long-term pursuit in this field. Herein, we disclose a ligand-enabled enantio- and site-selective remote C–H arylation of 2-(2-phenylpropyl)pyridine derivatives. The combination of an acetyl-protected aminoethyl phenyl thioether (MPA-thiol) with aryl iodides is found to enable γ-C(sp3)–H arylation, whereas L-pyroglutamic acid (L-pGlu) promotes δ-C(sp2)–H cross-coupling with various aryl-Bpin moieties. Notably, both C–H arylations proceed with high enantioselectivity and good yields. The results of DFT calculations support the enantioselectivity and site-selectivity of these two C–H arylations. Moreover the utility of this transformation was demonstrated by derivatization of a harmane alkaloid, a gram scale reaction and the successful removal of the pyridyl directing group.

Graphical abstract: Ligand-enabled enantio- and site-selective remote C–H arylation of 2-(2-phenpropyl)pyridine derivatives

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Article information

Article type
Research Article
Submitted
27 Nov 2024
Accepted
24 Jan 2025
First published
24 Jan 2025

Org. Chem. Front., 2025, Advance Article

Ligand-enabled enantio- and site-selective remote C–H arylation of 2-(2-phenpropyl)pyridine derivatives

D. Li, J. Li, S. Yabu, L. Wang, H. Sato, M. Higashi, Y. Kuninobu and H. Li, Org. Chem. Front., 2025, Advance Article , DOI: 10.1039/D4QO02236J

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