Author
Listed:
- Haoyue Li
(International Campus of Tianjin University
National University of Singapore)
- Tie Wang
(International Campus of Tianjin University
National University of Singapore)
- Shifu Wang
(Chinese Academy of Sciences)
- Xuning Li
(Chinese Academy of Sciences)
- Yanqiang Huang
(Chinese Academy of Sciences)
- Ning Yan
(International Campus of Tianjin University
National University of Singapore
National University of Singapore)
Abstract
Amines are commonly synthesized through the amination of organooxygenates using ammonia, frequently involving the use of noble metal catalysts. In this study, we present an alternative route to make amines using iron nitride (Fe2.5N) as the nitrogen source. Without any additional catalyst, Fe2.5N reacts with a range of alcohols at 250 °C under 1 or 10 bar H2 to produce amines as major products. Mechanistic investigations indicate that hydrogen activates the nitrogen species within iron nitride, converting them into surface NH and NH2 groups that then react with alcohols to form amines. Building on this foundation, we further demonstrate an iron nitride-mediated chemical looping pathway that utilizes N2 as the nitrogen source to synthesize octylamines. In this process, N2 first reacts with iron to form FexN by a ball-milling method at ambient temperature and 6 bar N2. The as-prepared FexN subsequently reacts with alcohols to yield amines, transferring over 80% of the nitrogen to organic compounds. This looping process proves stable across four cycles.
Suggested Citation
Haoyue Li & Tie Wang & Shifu Wang & Xuning Li & Yanqiang Huang & Ning Yan, 2025.
"Chemical looping synthesis of amines from N2 via iron nitride as a mediator,"
Nature Communications, Nature, vol. 16(1), pages 1-9, December.
Handle:
RePEc:nat:natcom:v:16:y:2025:i:1:d:10.1038_s41467-024-55511-4
DOI: 10.1038/s41467-024-55511-4
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