FeOx-supported gold nanocatalyst is one of the most active catalysts for low-temperature CO oxidation. However, the origin of the high activity is still in debate. In this work, using a combination of surface-sensitive in situ FT-IR, Raman spectroscopy, and microcalorimetry, we provide unambiguous evidence that the surface lattice oxygen of the FeOx support participates directly in the low-temperature CO oxidation, and the reaction proceeds mainly through a redox mechanism. Both the presence of gold and the ferrihydrite nature of the FeOx support promote the redox activity greatly. Calcination treatment has a detrimental effect on the redox activity of the Au/FeOx, which in turn decreases greatly the activity for low-temperature CO oxidatio...
National @ ING+FMO:JROInternational audienceSince the pioneering work of Haruta et al [1] gold catal...
We address the question of the nature of Au NP activation and through a combination of experimental ...
Fe(OH)(x)-supported noble metal catalysts exhibited good performance in low-temperature CO oxidation...
Direct Evidences for Redox Mechanism of Low-Temperature CO Oxidation over Au FeOx Catalys
Au/Fe2O3 catalysts has long been demonstrated to be highly active for CO oxidation at low temperatur...
Au/gamma-Fe2O3 and Au/alpha-Fe2O3 catalysts with identical size of Au nanoparticles, chemical state ...
Gold-iron oxide (Au/FeOx) is one of the highly active catalysts for CO oxidation, and is also a typi...
Au/γ-Fe<sub>2</sub>O<sub>3</sub> and Au/α-Fe<sub>2</sub>O<sub>3</sub> catalysts with identical size ...
A series of Au/Fe-O catalysts have been prepared by a co-precipitation method from a Mixture of HAuC...
Catalysis by gold has emerged since the pioneering discovery that supported gold catalysts could be ...
Au based catalysts have been extensively studied since Masatake Haruta in Japan discovered that smal...
Gold is considered as noble among other metals because of its resistance to oxidation and corrosion...
Although highly dispersed Au catalysts with Au nanoparticles (NPs) of a few nanometers in diameter a...
Noble metals supported on reducible oxides, like CoOx and TiOx, exhibit superior activity in many ch...
Gold has been known as being almost completely inactive as a catalyst. However, it was found recentl...
National @ ING+FMO:JROInternational audienceSince the pioneering work of Haruta et al [1] gold catal...
We address the question of the nature of Au NP activation and through a combination of experimental ...
Fe(OH)(x)-supported noble metal catalysts exhibited good performance in low-temperature CO oxidation...
Direct Evidences for Redox Mechanism of Low-Temperature CO Oxidation over Au FeOx Catalys
Au/Fe2O3 catalysts has long been demonstrated to be highly active for CO oxidation at low temperatur...
Au/gamma-Fe2O3 and Au/alpha-Fe2O3 catalysts with identical size of Au nanoparticles, chemical state ...
Gold-iron oxide (Au/FeOx) is one of the highly active catalysts for CO oxidation, and is also a typi...
Au/γ-Fe<sub>2</sub>O<sub>3</sub> and Au/α-Fe<sub>2</sub>O<sub>3</sub> catalysts with identical size ...
A series of Au/Fe-O catalysts have been prepared by a co-precipitation method from a Mixture of HAuC...
Catalysis by gold has emerged since the pioneering discovery that supported gold catalysts could be ...
Au based catalysts have been extensively studied since Masatake Haruta in Japan discovered that smal...
Gold is considered as noble among other metals because of its resistance to oxidation and corrosion...
Although highly dispersed Au catalysts with Au nanoparticles (NPs) of a few nanometers in diameter a...
Noble metals supported on reducible oxides, like CoOx and TiOx, exhibit superior activity in many ch...
Gold has been known as being almost completely inactive as a catalyst. However, it was found recentl...
National @ ING+FMO:JROInternational audienceSince the pioneering work of Haruta et al [1] gold catal...
We address the question of the nature of Au NP activation and through a combination of experimental ...
Fe(OH)(x)-supported noble metal catalysts exhibited good performance in low-temperature CO oxidation...