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Total oxidation of naphthalene using mesoporous CeO2 catalysts synthesized by nanocasting from two dimensional SBA-15 and three dimensional KIT-6 and MCM-48 silica templates

Aranda, A., Puertolas, B, Solsona, Benjamin Espriu, Agouriam, S., Murillo, R., Mastral, A. M., Taylor, Stuart H. ORCID: https://orcid.org/0000-0002-1933-4874 and Garcia, T. 2010. Total oxidation of naphthalene using mesoporous CeO2 catalysts synthesized by nanocasting from two dimensional SBA-15 and three dimensional KIT-6 and MCM-48 silica templates. Catalysis Letters 134 (1-2) , pp. 110-117. 10.1007/s10562-009-0203-9

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Abstract

Ceria catalysts have been prepared by a nanocasting procedure using SBA-15, MCM-48 and KIT-6 silica-based templates, and investigated for the total oxidation of naphthalene. In all cases cubic fluorite CeO2 was prepared, and the structure of the template was replicated when SBA-15 and MCM-48 were used. The KIT-6 template was not replicated by the nanocasting synthesis, but in all cases mesoporous CeO2 was obtained with high surface areas (91-190 m2 g-1). All of the catalysts demonstrated high activity for naphthalene oxidation to CO2, and the most active was the catalyst prepared from the KIT-6 template. The high activity was attributed to the small crystallite size of the CeO2, combined with high surface area and the highly accessible catalyst surface. © 2009 Springer Science+Business Media, LLC.

Item Type: Article
Status: Published
Schools: Chemistry
Architecture
Cardiff Catalysis Institute (CCI)
Uncontrolled Keywords: Catalyst surfaces; Ceria; Ceria catalysts; High activity; High surface area; Mesoporous; Nanocasting; Naphthalene oxidation; Silica templates; Total oxidation, Catalysis; Catalyst activity; Cerium compounds; Crystallite size; Naphthalene; Silica; Synthesis (chemical); Two dimensional, Catalytic oxidation
Additional Information: cited By (since 1996) 1
Publisher: Kluwer Academic Publishers
ISSN: 1011372X
Last Modified: 05 Jan 2023 09:56
URI: https://orca.cardiff.ac.uk/id/eprint/10238

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