Innovative Route to Prepare of Au/C Catalysts by Replication of Gold-containing Mesoporous Silicas
Author(s) -
Fatmé Kerdi,
Valérie Caps,
Alain Tuel
Publication year - 2011
Publication title -
physics procedia
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.26
H-Index - 61
ISSN - 1875-3892
DOI - 10.1016/j.phpro.2011.10.031
Subject(s) - materials science , catalysis , chemical engineering , wetting , mesoporous silica , mesoporous material , carbon fibers , porosity , colloidal gold , nanoparticle , leaching (pedology) , phase (matter) , oxide , composite number , nanotechnology , organic chemistry , composite material , chemistry , metallurgy , engineering , environmental science , soil science , soil water
Gold-catalyzed aerobic epoxidations in the liquid phase are generally performed in low-polarity solvents, in which conventional oxide-supported catalysts are poorly dispersed. To improve the wettability of the catalytic powder and, thus, the efficiency of the catalyst, gold nanoparticles (NPs) have been dispersed on meso-structured carbons. Gold is first introduced in functionalized mesostructured silica and particles are formed inside the porosity. Silica pores are then impregnated with a carbon precursor and the composite material is heated at 900 °C under vacuum or nitrogen. Silica is then removed by acid leaching, leading to partially encapsulated gold particles in mesoporous carbon. Carbon prevents aggregation of gold particles at high temperature, both the mean size and distribution being similar to those observed in silica. However, while Au@SiO2 exhibit significant catalytic activity in the aerobic oxidation of trans-stilbene in the liquid phase, its Au@C mesostructured replica is quite inactive
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