CHF 135.00

Construction and Reactivity of Pt-Based Bi-component Catalytic Systems

Inglese · Copertina rigida

Spedizione di solito entro 6 a 7 settimane

Descrizione

Ulteriori informazioni

In this thesis, the author outlines the construction of active structure and modulation of catalytic reactivity of Pt-based bi-component catalysts, from the model systems to real supported catalysts. The thesis investigates the promotion effect of the second components on catalytic performance of Pt catalysts, and presents the reversible generation of the "sandwich-like" structure of Pt-Ni catalysts, containing both surface NiO1-X and subsurface Ni by alternating redox treatments at medium temperature. With the aid of single layer graphene, the dynamic process of chemical reactions occurring on the Pt(111) surface can be visualized using in-situ LEEM and DUV-PEEM techniques, the results of which are included here. The author reveals that the graphene layer exhibits a strong confinement effect on the chemistry of molecules underneath and the intercalated CO can desorb from the Pt surface around room temperature and in UHV, which may promote the CO oxidation confined under graphene. 

Riassunto

In this thesis, the author outlines the construction of active structure and modulation of catalytic reactivity of Pt-based bi-component catalysts, from the model systems to real supported catalysts. The thesis investigates the promotion effect of the second components on catalytic performance of Pt catalysts, and presents the reversible generation of the “sandwich-like” structure of Pt-Ni catalysts, containing both surface NiO1-X and subsurface Ni by alternating redox treatments at medium temperature. With the aid of single layer graphene, the dynamic process of chemical reactions occurring on the Pt(111) surface can be visualized using in-situ LEEM and DUV-PEEM techniques, the results of which are included here. The author reveals that the graphene layer exhibits a strong confinement effect on the chemistry of molecules underneath and the intercalated CO can desorb from the Pt surface around room temperature and in UHV, which may promote the CO oxidation confined under graphene. 

Dettagli sul prodotto

Autori Rentao Mu
Editore Springer, Berlin
 
Contenuto Libro
Forma del prodotto Copertina rigida
Data pubblicazione 31.10.2017
Categoria Scienze naturali, medicina, informatica, tecnica > Chimica > Chimica fisica
 
EAN 9783662552421
ISBN 978-3-662-55242-1
Numero di pagine 90
Illustrazioni XII, 90 p. 64 illus., 60 illus. in color.
Dimensioni (della confezione) 16.1 x 24.2 x 1.1 cm
Peso (della confezione) 274 g
 
Serie Springer Theses
Springer Theses
Categorie B, Catalysis, Chemistry and Materials Science, Materials science, Physical Chemistry, Materials—Surfaces, Interfaces (Physical sciences), Surface and Interface Science, Thin Films, Surface chemistry & adsorption, Surface and Interface and Thin Film, Thin films, Surfaces and Interfaces, Thin Films, Surfaces, Interfaces and Thin Film, Surfaces (Physics)
 

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