Bypassing the Nitrido Wall Using a Redox‐Active Isocyanide: Nucleophilic Attack on CO by a Rhenium Nitride Complex

A Alexander S. Hegg (Department of Chemistry Yale University 225 Prospect St. New Haven Connecticut USA) R Ryan S. Donnelly (Department of Chemistry Yale University 225 Prospect St. New Haven Connecticut USA) J Jeremy E. Weber (Department of Chemistry Yale University 225 Prospect St. New Haven Connecticut USA) R Robert H. Crabtree B Brandon Q. Mercado (Department of Chemistry) P Patrick L. Holland (Department of Chemistry, Yale University)

Abstract

Abstract Reactive rhenium(III) nitride complexes could result from filling Re─N π* orbitals, but such complexes lie beyond the “nitrido wall” and are rare due to their instability. Here, we describe a method for bypassing the nitrido wall by incorporating a redox‐active isocyanide supporting ligand, which accommodates two electrons as shown by crystallographic, spectroscopic, and computational studies. These electrons can be returned to the metal during its facile reaction with CO to form a cyanate complex, demonstrating the nucleophilic reactivity of the nitride. Thus, assistance by the isocyanide enables an N 2 ‐derived rhenium nitride to engage in N─C bond forming reactivity.

Article Details

Volume / Issue Vol. 64, Issue 29
Published July 14, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (6)

A

Alexander S. Hegg

Department of Chemistry Yale University 225 Prospect St. New Haven Connecticut USA

R

Ryan S. Donnelly

Department of Chemistry Yale University 225 Prospect St. New Haven Connecticut USA

J

Jeremy E. Weber

Department of Chemistry Yale University 225 Prospect St. New Haven Connecticut USA

R

Robert H. Crabtree

B

Brandon Q. Mercado

Department of Chemistry

P

Patrick L. Holland

Department of Chemistry, Yale University