Photocatalytic Synthesis of Unprotected Sulfonimidamides and Their Application in Photochemical Nitrene Transfer Reactions

I Ivan Sliusarevskyi (RWTH Aachen University Institute of Organic Chemistry Landoltweg 1 52074 Aachen Germany) J Jordan Diaz (Monash University School of Chemistry Clayton Victoria 3800 Australia) S Sudip Senapati (University of Bayreuth Organic Chemistry II Universitätsstr. 30 95447 Bayreuth Germany) B Ben J. Ebel (RWTH Aachen University Institute of Inorganic Chemistry Landoltweg 1 52074 Aachen Germany) N Nico J. Linnartz (RWTH Aachen University Institute of Inorganic Chemistry Landoltweg 1 52074 Aachen Germany) I Iris M. Oppel (RWTH Aachen University Institute of Inorganic Chemistry Landoltweg 1 52074 Aachen Germany) C Claire Empel (RWTH Aachen University Institute of Organic Chemistry Landoltweg 1 52074 Aachen Germany) P Philip Wai Hong Chan (Monash University School of Chemistry Clayton Victoria 3800 Australia) R Rene M. Koenigs (University of Bayreuth Bayreuth Germany)

Abstract

Abstract The selective incorporation of nitrogen into organic molecules remains a central challenge in modern synthetic chemistry, particularly when aiming to access complex, functionalized scaffolds under mild and sustainable conditions. In this report, we describe a photocatalytic method that employs hydroxylamine‐derived nitrene precursors and unprotected sulfinamides under mild conditions, enabling efficient nitrene transfer without the need for stoichiometric amounts of an oxidant. The resulting unprotected sulfonimidamides serve not only as target compounds but also as versatile intermediates for further nitrene‐transfer reactions, affording complex sulfur–nitrogen‐rich frameworks. Mechanistic studies support a photoinduced single‐electron transfer process involving a reactant complex between the photocatalyst and nitrene precursor. This work establishes a general and modular platform for accessing challenging architectures based on sulfonimidamides, expanding the toolkit for late‐stage functionalization and heteroatom‐rich molecule construction.

Article Details

Volume / Issue Vol. 64, Issue 39
Published September 22, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (9)

I

Ivan Sliusarevskyi

RWTH Aachen University Institute of Organic Chemistry Landoltweg 1 52074 Aachen Germany

J

Jordan Diaz

Monash University School of Chemistry Clayton Victoria 3800 Australia

S

Sudip Senapati

University of Bayreuth Organic Chemistry II Universitätsstr. 30 95447 Bayreuth Germany

B

Ben J. Ebel

RWTH Aachen University Institute of Inorganic Chemistry Landoltweg 1 52074 Aachen Germany

N

Nico J. Linnartz

RWTH Aachen University Institute of Inorganic Chemistry Landoltweg 1 52074 Aachen Germany

I

Iris M. Oppel

RWTH Aachen University Institute of Inorganic Chemistry Landoltweg 1 52074 Aachen Germany

C

Claire Empel

RWTH Aachen University Institute of Organic Chemistry Landoltweg 1 52074 Aachen Germany

P

Philip Wai Hong Chan

Monash University School of Chemistry Clayton Victoria 3800 Australia

R

Rene M. Koenigs

University of Bayreuth Bayreuth Germany