Controlling the interaction between metal nanoparticles and the support is a means to tune catalytic activity and stability. Herein we investigated the influence of the morphology of hematite on the performance of gold for CO oxidation. Nanosphere and nanorod forms of hematite, α-Fe2O3(S) and α-Fe2O3(R) respectively, were used to support gold nanoparticles. The surface of α-Fe2O3(R) was more corrugated than that of α-Fe2O3(S). These defects provide anchoring sites for gold nanoparticle deposition and stabilization. Due to the stronger gold-support interactions, Au/α-Fe2O3(R) contained smaller and more hemispherical gold particles than Au/α-Fe2O3(S). Au/α-Fe2O3(R) was not only more active in CO oxidation but also much more stable as evident ...
The catalytic conversion of carbon monoxide (CO) into carbon dioxide (CO2) at a low temperature is v...
A series of Au/TiO<sub>2</sub> catalysts for CO oxidation with same Au loading but different Au nano...
The metal-support interaction (MSI) plays an essential role in the catalysis by gold. We summarized ...
Controlling the interaction between metal nanoparticles and the support is a means to tune catalytic...
A series of Au/Fe-O catalysts have been prepared by a co-precipitation method from a Mixture of HAuC...
Au/Fe2O3 catalysts has long been demonstrated to be highly active for CO oxidation at low temperatur...
Very active FeO<sub><i>x</i></sub>–Au catalysts for CO oxidation are obtained after depositing nanop...
Uniform Au nanoparticles (~2 nm) with narrow size-distribution (standard deviation: 0.5–0.6 nm) supp...
We present the study on the catalytic performance of gold particles supported on spinel type MgFe2O4...
The identity of active species in supported gold catalysts for low temperature carbon monoxide oxida...
Nnoastructured metal oxides are widely used in catalysis where their catalytic properties are closel...
FeOx-supported gold nanocatalyst is one of the most active catalysts for low-temperature CO oxidatio...
Supported gold catalysts were prepared by a deposition-precipitation method and characterized to und...
Gold-iron oxide (Au/FeOx) is one of the highly active catalysts for CO oxidation, and is also a typi...
Gold nanoparticles supported on transition metal oxides are found to exhibit a pronounced particle s...
The catalytic conversion of carbon monoxide (CO) into carbon dioxide (CO2) at a low temperature is v...
A series of Au/TiO<sub>2</sub> catalysts for CO oxidation with same Au loading but different Au nano...
The metal-support interaction (MSI) plays an essential role in the catalysis by gold. We summarized ...
Controlling the interaction between metal nanoparticles and the support is a means to tune catalytic...
A series of Au/Fe-O catalysts have been prepared by a co-precipitation method from a Mixture of HAuC...
Au/Fe2O3 catalysts has long been demonstrated to be highly active for CO oxidation at low temperatur...
Very active FeO<sub><i>x</i></sub>–Au catalysts for CO oxidation are obtained after depositing nanop...
Uniform Au nanoparticles (~2 nm) with narrow size-distribution (standard deviation: 0.5–0.6 nm) supp...
We present the study on the catalytic performance of gold particles supported on spinel type MgFe2O4...
The identity of active species in supported gold catalysts for low temperature carbon monoxide oxida...
Nnoastructured metal oxides are widely used in catalysis where their catalytic properties are closel...
FeOx-supported gold nanocatalyst is one of the most active catalysts for low-temperature CO oxidatio...
Supported gold catalysts were prepared by a deposition-precipitation method and characterized to und...
Gold-iron oxide (Au/FeOx) is one of the highly active catalysts for CO oxidation, and is also a typi...
Gold nanoparticles supported on transition metal oxides are found to exhibit a pronounced particle s...
The catalytic conversion of carbon monoxide (CO) into carbon dioxide (CO2) at a low temperature is v...
A series of Au/TiO<sub>2</sub> catalysts for CO oxidation with same Au loading but different Au nano...
The metal-support interaction (MSI) plays an essential role in the catalysis by gold. We summarized ...