Ammonia Synthesis from First-Principles Calculations
Haldor Topsoe (Denmark) · Technical University of Denmark
Abstract
The rate of ammonia synthesis over a nanoparticle ruthenium catalyst can be calculated directly on the basis of a quantum chemical treatment of the problem using density functional theory. We compared the results to measured rates over a ruthenium catalyst supported on magnesium aluminum spinel. When the size distribution of ruthenium particles measured by transmission electron microscopy was used as the link between the catalyst material and the theoretical treatment, the calculated rate was within a factor of 3 to 20 of the experimental rate. This offers hope for computer-based methods in the search for catalysts.
Citation impact
- FWCI
- 19.30
- Percentile
- 100%
- References
- 25
Authors
8- KHKaroliina Honkala
Haldor Topsoe (Denmark), Technical University of Denmark
- AHAnders Hellman
Haldor Topsoe (Denmark), Technical University of Denmark
- INIoannis N. Remediakis
Haldor Topsoe (Denmark), Technical University of Denmark
- ÁLÁ. Logadóttir
Haldor Topsoe (Denmark), Technical University of Denmark
- ACAnna Carlsson
Haldor Topsoe (Denmark), Technical University of Denmark
Topics & keywords
- Ruthenium
- Catalysis
- Ammonia
- Ammonia production
- Magnesium
- Materials science
- Density functional theory
- Spinel
- Clean water and sanitation