Merging Hydrogen‐Atom‐Transfer and the Truce‐Smiles Rearrangement for Synthesis of β‐Arylethylamines from Unactivated Allylsulfonamides

H Hanqi Zhou D Danijela Lunic N Nil Sanosa (Department of Chemistry Instituto de Investigación Química de la Universidad de La Rioja (IQUR) Universidad de La Rioja Madre de Dios 53 Logroño 26006 Spain) D Diego Sampedro (Department of Chemistry Instituto de Investigación Química de la Universidad de La Rioja (IQUR) Universidad de La Rioja Madre de Dios 53 Logroño 26006 Spain) I Ignacio Funes‐Ardoiz (Department of Chemistry Instituto de Investigación Química de la Universidad de La Rioja (IQUR) Universidad de La Rioja Madre de Dios 53 Logroño 26006 Spain) C Christopher J. Teskey (Institute of Organic Chemistry TU Braunschweig Braunschweig Germany)

Abstract

Abstract Arylethylamines are crucial elements in pharmaceutical molecules, making methods for their synthesis highly significant. The Truce–Smiles rearrangement is a well‐developed strategy to synthesize arylethylamine motifs via aryl migration. However, most examples require amide substrates to activate the alkene to attack by a radical precursor. This strategy both limits the product scope to amide‐containing compounds as well as necessitating the incorporation of specific functional groups arising from the initial radical addition. In this work, we overcome these limitations, delivering a hydrogen‐atom transfer from a cobalt catalyst to unactivated alkenes to yield β‐arylethylamines with simple alkyl chains. DFT studies reveal that increasing the steric hindrance in at least one of the ortho positions on the migrating aromatic group promotes ipso over ortho addition, a selectivity that contrasts with previous methods.

Article Details

Volume / Issue Vol. 64, Issue 19
Published May 01, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (6)

H

Hanqi Zhou

D

Danijela Lunic

N

Nil Sanosa

Department of Chemistry Instituto de Investigación Química de la Universidad de La Rioja (IQUR) Universidad de La Rioja Madre de Dios 53 Logroño 26006 Spain

D

Diego Sampedro

Department of Chemistry Instituto de Investigación Química de la Universidad de La Rioja (IQUR) Universidad de La Rioja Madre de Dios 53 Logroño 26006 Spain

I

Ignacio Funes‐Ardoiz

Department of Chemistry Instituto de Investigación Química de la Universidad de La Rioja (IQUR) Universidad de La Rioja Madre de Dios 53 Logroño 26006 Spain

C

Christopher J. Teskey

Institute of Organic Chemistry TU Braunschweig Braunschweig Germany