Gold-catalyzed aerobic oxidation of benzyl alcohol: Effect of gold particle size on activity and selectivity in different solvents

Haider, P; Kimmerle, B; Krumeich, F; Kleist, W; Grunwaldt, JD; Baiker, A

HERO ID

857493

Reference Type

Journal Article

Year

2008

Language

English

HERO ID 857493
In Press No
Year 2008
Title Gold-catalyzed aerobic oxidation of benzyl alcohol: Effect of gold particle size on activity and selectivity in different solvents
Authors Haider, P; Kimmerle, B; Krumeich, F; Kleist, W; Grunwaldt, JD; Baiker, A
Journal Catalysis Letters
Volume 125
Issue 3-4
Page Numbers 169-176
Abstract The effect of the size of gold particles deposited on CeO2 and TiO2 supports on their catalytic behavior in the aerobic oxidation of benzyl alcohol in different solvents (mesitylene, toluene, and supercritical carbon dioxide) has been investigated. The size of supported gold particles deposited via a colloidal route was in the range 1.3-11.3 nm, as determined by means of EXAFS and HAADF-STEM measurements. The catalytic performance of the supported gold catalysts in the different solvents revealed a significant effect of the gold particle size. Optimal activity was observed for catalysts with medium particle size (ca. 6.9 nm) whereas smaller and bigger particles showed inferior activity. Identical trends for the activity-particle size relationship were found using Au/CeO2 and Au/TiO2 for the reaction at atmospheric pressure in conventional solvents (mesitylene, toluene) as well as under supercritical conditions (scCO(2)). Selectivity to benzaldehyde was only weakly affected by the gold particle size and mainly depended on reaction conditions. In supercritical CO2 (scCO(2)) selectivity was higher than in the conventional solvents under atmospheric pressure. All catalysts tested with particle sizes ranging from 1.3 to 11.3 nm showed excellent selectivity of 99% or higher under supercritical conditions.
Doi 10.1007/s10562-008-9567-5
Wosid WOS:000259412500001
Is Certified Translation No
Dupe Override No
Comments Scopus URL: https://www.scopus.com/inward/record.uri?eid=2-s2.0-52349108360&doi=10.1007%2fs10562-008-9567-5&partnerID=40&md5=86be8223a37cd958a8d9f4b585242067
Is Public Yes
Language Text English
Keyword gold catalyst; particle size effect; benzyl alcohol; aerobic oxidation; supercritical CO2; gold colloids; chemistry, physical
Is Qa No