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- 2012 AIChE Annual Meeting
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- Fundamentals of Surface Reactivity II
- (754e) Mechanistic Studies On the Size Effect of Cobalt Nanoparticles On CO Oxidation
In this theoretical study we investigate the CO oxidation on a CoO surface using Density Functional Theory (DFT) calculations.
Three possible mechanisms were considered for CO oxidation on CoO, namely:
1. CO(ads) + OL --> CO2(g) + OV
2. CO(ads) + O2(ads) --> OOCO(ads) --> O(ads) + CO2(ads)
3. CO(ads) + O2(ads) --> O(ads) + OCO(ads) --> CO2 (g) + O(ads)
The three mechanisms were investigated to calculate the barriers for CO oxidation and the mechanism with OCO intermediate was found to be in agreement with the experimental barriers. The size effect on the activation barriers will also be discussed. In this work, VASP (Vienna Ab Initio Simulation package) code [5-7] with Perdew–Burke–Ernzerhof (PBE) form of the generalized gradient approximation (GGA) [8] functional was used for the exchange and correlation functional. DFT+U method by Dudarev et al.[9] was used in spin polarized DFT-PBE calculations which accurately treats the strongly localized d or f electrons.
References
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(9) Dudarev, S. L.; Botton, G. A.; Savrasov, S. Y.; Humphreys, C. J.; Sutton, A. P. Phys. Rev. B: Condens. Matter 1998, 57, 1505.