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Structural and Kinetic DFT Characterization of Materials to Rationalize Catalytic Performance

Authors :
Antonio Prestianni
Giampaolo Barone
Dario Duca
Francesco Ferrante
Teresa Rubino
V. D’Anna
Remedios Cortese
Sergio Giuffrida
G. Li Manni
Nerina Armata
G. Baldissin
ARMATA, N
BALDISSIN, G
BARONE, G
CORTESE, R
FERRANTE, F
GIUFFRIDA, S
PRESTIANNI, A
RUBINO, T
DUCA, D
Source :
Topics in Catalysis. 52:444-455
Publication Year :
2009
Publisher :
Springer Science and Business Media LLC, 2009.

Abstract

This review shortly discusses recent results obtained by the application of density functional theory for the calculations of the adsorption and diffusion properties of small molecules and their reactivity on heterogenous catalytic systems, in the ambit of the Nanocat project. Particular focus has been devoted to palladium catalysts, either in atomic or small cluster form. Some protocols have been tested to obtain efficient ways able to treat the electronic and geometric influence of supports like zeolites and carbon nanotubes on the catalytic properties of palladium. The hydroisomerization of cis-but-2-ene is discussed as model reaction on supported and unsupported Pd clusters. Some preliminary results on the structural investigation of systems formed by a palladium clusters and block copolymers are also presented.

Details

ISSN :
15729028 and 10225528
Volume :
52
Database :
OpenAIRE
Journal :
Topics in Catalysis
Accession number :
edsair.doi.dedup.....17ed6279152bbf80ad3dc13ddb562011
Full Text :
https://doi.org/10.1007/s11244-008-9176-y