Copper-Mediated Nitrogen-Atom Migration into Saturated Carbocycles

Abstract The conversion of carbocyclic rings into medicinally significant heterocycles represents a promising emerging strategy for molecular remodeling of pharmaceutical lead compounds. The selective activation and functionalization of C(sp3)–C(sp3) bonds, however, remains a formidable challenge for generalizing these methods to saturated rings. We report an operationally straightforward, one-step method for the formal insertion of nitrogen atoms into the skeletal cores of saturated carbocycles. This method leverages the underexplored ability of nitrogen-centered radical intermediates to trigger deconstructive β-scission events, and we have discovered a Cu(II) system that both generates nitrogen-centered radicals directly from sulfonamides and mediates the oxidative cyclization of the ring-opened organoradical intermediates. Given its broad functional group tolerance, scalability, and capacity for late-stage scaffold-hopping, this strategy establishes nitrogen-centered radical-mediated β-scission as a viable, general tool for the synthesis of nitrogen heterocycles by skeletal editing.

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Publication Details

Journal
Journal of the American Chemical Society
Published
2026-10-08
DOI
https://doi.org/10.1021/jacs.6c15884
Primary Topic
Radical Photochemical Reactions
Type
article
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article

Copper-Mediated Nitrogen-Atom Migration into Saturated Carbocycles

Tehshik P. Yoon, Michael J. Zeiler, Cade A. MacAllister, Matthieu F. Maciejewski
Journal of the American Chemical Society
Radical Photochemical Reactions
article

Copper-Mediated Nitrogen-Atom Migration into Saturated Carbocycles

Tehshik P. Yoon, Michael J. Zeiler, Cade A. MacAllister, Matthieu F. Maciejewski
article en

Abstract

Abstract The conversion of carbocyclic rings into medicinally significant heterocycles represents a promising emerging strategy for molecular remodeling of pharmaceutical lead compounds. The selective activation and functionalization of C(sp3)–C(sp3) bonds, however, remains a formidable challenge for generalizing these methods to saturated rings. We report an operationally straightforward, one-step method for the formal insertion of nitrogen atoms into the skeletal cores of saturated carbocycles. This method leverages the underexplored ability of nitrogen-centered radical intermediates to trigger deconstructive β-scission events, and we have discovered a Cu(II) system that both generates nitrogen-centered radicals directly from sulfonamides and mediates the oxidative cyclization of the ring-opened organoradical intermediates. Given its broad functional group tolerance, scalability, and capacity for late-stage scaffold-hopping, this strategy establishes nitrogen-centered radical-mediated β-scission as a viable, general tool for the synthesis of nitrogen heterocycles by skeletal editing.

Journal of the American Chemical Society
University of Wisconsin–Madison (US)
Openalex Percentile: Top 25%
Radical Photochemical Reactions
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Copper-Mediated Nitrogen-Atom Migration into Saturated Carbocycles — Tehshik P. Yoon, Michael J. Zeiler, et al. · Journal of the American Chemical Society (2026) | TGRS Research Map | TGRS