Options
Conversion of Dinitrogen into Acetonitrile under Ambient Conditions
ISSN
1521-3773
1433-7851
Date Issued
2016
Author(s)
DOI
10.1002/anie.201600790
Abstract
About 20% of the ammonia production is used as the chemical feedstock for nitrogen-containing chemicals. However, while synthetic nitrogen fixation at ambient conditions has had some groundbreaking contributions in recent years, progress for the direct conversion of N-2 into organic products remains limited and catalytic reactions are unknown. Herein, the rhenium-mediated synthesis of acetonitrile using dinitrogen and ethyl triflate is presented. A synthetic cycle in three reaction steps with high individual isolated yields and recovery of the rhenium pincer starting complex is shown. The cycle comprises alkylation of a nitride that arises from N-2 splitting and subsequent imido ligand centered oxidation to nitrile via a 1-azavinylidene (ketimido) intermediate. Different synthetic strategies for intra- and intermolecular imido ligand oxidation and associated metal reduction were evaluated that rely on simple proton, electron, and hydrogen-atom transfer steps.
File(s)
No Thumbnail Available
Name
2016_Schneider_Klopsch_Angew_Chem_final_Manuscript.pdf
Description
Submitted Version
Size
676.75 KB
Checksum (MD5)
8a51c3fa2296048614bf08d5dda8a7ef
No Thumbnail Available
Name
Manuscript_for_OA.pdf
Description
Author Peer Reviewed Version
Size
446.38 KB
Checksum (MD5)
62038c4820634403df6dd0a5a4a6eb20