Computational approaches to the determination of active site structures and reaction mechanisms in heterogeneous catalysts

John Meurig Thomas, C. Richard A. Catlow, Alexey A. Sokol, Sam French
2005-04-15

SCID:  54.1/z3rnwptz
We apply quantum chemical methods to the study of active site structures and reaction mechanisms in mesoporous silica and metal oxide catalysts. Our approach is based on the use of both molecular cluster and embedded cluster (QM/MM) techniques, where the active site and molecular complex are described using density functional theory (DFT) and the embedding matrix simulated by shell model potentials. We consider three case studies: alkene epoxidation over the microporous TS-1 catalyst; methanol synthesis on ZnO and Cu/ZnO and C-H bond activation over Li-doped MgO.
Publication Details
Publication Date
2005-04-15
Journal
Publisher
ISSN
Access Type
Author Information
Authors
John Meurig Thomas
C. Richard A. Catlow
Alexey A. Sokol
Sam French
Explore More Research
Use the citation graph to discover related papers and expand your research horizons.
Click any node to explore
Download PDF
100%