Interaction of SO<inf>2</inf> with Cu/TiC(0 0 1) and Au/TiC(0 0 1): Toward a new family of DeSO<inf>x</inf> catalysts
Abstract:
Experiments carried out under well-controlled conditions and density functional theory (DFT)-based calculations evidence that Cu and Au nanoparticles supported on a TiC(0 0 1) surface are quite active for the dissociation of the SO2 molecule. The Cu/TiC(0 0 1) and Au/TiC(0 0 1) systems cleave both S-O bonds of SO2 at a temperature of 150 K, displaying a reactivity much larger than that of TiC(0 0 1) or extended surfaces of bulk copper and gold. The origin of the high activity of the Cu/TiC(0 0 1) and Au/TiC(0 0 1) systems lies on the interaction between the C atoms of the substrate and the metal atoms of the supported particle, which results in a large polarization of its electron density. Experiments and theory consistently indicate that the Cu/TiC system is more active toward SO2 dissociation than the Au/TiC system. This type of systems may provide alternative and efficient DeSO x catalysts. © 2011 Elsevier Inc. All rights reserved.
Año de publicación:
2011
Keywords:
- DFT
- DeSO x
- tic
- XPS
- Cu nanoparticles
- Au nanoparticles
Fuente:
Tipo de documento:
Article
Estado:
Acceso restringido
Áreas de conocimiento:
- Catálisis
- Catálisis
Áreas temáticas:
- Tecnología de productos químicos industriales
- Química inorgánica
- Ingeniería química