The role of atomic excited states of Au on N2O capture and activation: A multireference second-order perturbation theory study
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.3521269
Reference48 articles.
1. When Gold Is Not Noble: Nanoscale Gold Catalysts
2. Nanoassembled model catalysts
3. Structural Analysis of Au/TiO2Catalysts by Debye Function Analysis
4. Comparative kinetic studies of CO$z.sbnd;O2 and CO$z.sbnd;NO reactions over single crystal and supported rhodium catalysts
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1. Charge and Geometrical Effects on the Catalytic N2O Reduction by Rh6– and Rh6+ Clusters;The Journal of Physical Chemistry C;2016-10-11
2. The N2O activation by Rh5 clusters. A quantum chemistry study;Journal of Molecular Modeling;2015-03-11
3. The spin significance in the capture and activation of N2O by small Rh nanoparticles;Journal of Molecular Catalysis A: Chemical;2013-09
4. Importance of Pd and Pt excited states in N2O capture and activation: A comparative study with Rh and Au atoms;International Journal of Quantum Chemistry;2013-02-12
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