This work aims to understand the influence of TiO2 surface structure in Au/TiO2 catalysts on CO oxidation. Au nanoparticles (3 wt%) in the range of 4 to 8 nm were loaded onto four kinds of TiO2 surfaces, which had different surface structures and were synthesized by calcining hydrogen titanate nanotubes at various temperatures and in different atmospheres. The Au catalyst supported on anatase nanorods exhibited the highest activity in CO oxidation at 30 °C among all the five Au/TiO2 catalysts including the reference catalyst of Au/TiO2-P25. X-ray photoelectron spectroscopy (XPS) and infrared emission spectra (IES) results indicate that the anatase nanorods have the most active surface on which water molecules can be strongly adsorbed and OH...
Distinctions between supported Au and Pt catalysts on TiO<sub>2</sub>(110) for CO oxidation have bee...
The molecular adsorption and CO oxidation on a gold-deposited TiO₂ catalyst were investigated by mea...
This paper remarks the general correlations of the shape and crystallinity of titanium dioxide (TiO2...
This work aims to understand the influence of TiO2 surface structure in Au/TiO2 catalysts on CO oxid...
Three catalytic oxidation reactions have been studied: The ultraviolet (UV) light induced photocatal...
We report the effect of metal-oxide interfaces on CO oxidation catalytic activity with inverse TiO2-...
The surface properties of oxidic supports and their interaction with the supported metals play criti...
A series of Au/TiO<sub>2</sub> catalysts for CO oxidation with same Au loading but different Au nano...
ABSTRACT: Density functional theory is used to determine the reaction mechanisms of CO oxidation and...
In this paper, we study the thermal activation of CO2 on the surface of small Au nanoparticles suppo...
Au based catalysts have been extensively studied since Masatake Haruta in Japan discovered that smal...
We address the question of the nature of Au NP activation and through a combination of experimental ...
Although highly dispersed Au catalysts with Au nanoparticles (NPs) of a few nanometers in diameter a...
Model catalysts of Au clusters supported on TiO2 thin films were prepared under ultra-high vacuum (U...
Gold catalysts were prepared on TiO2 supports of different phase structures (i.e., anatase, rutile a...
Distinctions between supported Au and Pt catalysts on TiO<sub>2</sub>(110) for CO oxidation have bee...
The molecular adsorption and CO oxidation on a gold-deposited TiO₂ catalyst were investigated by mea...
This paper remarks the general correlations of the shape and crystallinity of titanium dioxide (TiO2...
This work aims to understand the influence of TiO2 surface structure in Au/TiO2 catalysts on CO oxid...
Three catalytic oxidation reactions have been studied: The ultraviolet (UV) light induced photocatal...
We report the effect of metal-oxide interfaces on CO oxidation catalytic activity with inverse TiO2-...
The surface properties of oxidic supports and their interaction with the supported metals play criti...
A series of Au/TiO<sub>2</sub> catalysts for CO oxidation with same Au loading but different Au nano...
ABSTRACT: Density functional theory is used to determine the reaction mechanisms of CO oxidation and...
In this paper, we study the thermal activation of CO2 on the surface of small Au nanoparticles suppo...
Au based catalysts have been extensively studied since Masatake Haruta in Japan discovered that smal...
We address the question of the nature of Au NP activation and through a combination of experimental ...
Although highly dispersed Au catalysts with Au nanoparticles (NPs) of a few nanometers in diameter a...
Model catalysts of Au clusters supported on TiO2 thin films were prepared under ultra-high vacuum (U...
Gold catalysts were prepared on TiO2 supports of different phase structures (i.e., anatase, rutile a...
Distinctions between supported Au and Pt catalysts on TiO<sub>2</sub>(110) for CO oxidation have bee...
The molecular adsorption and CO oxidation on a gold-deposited TiO₂ catalyst were investigated by mea...
This paper remarks the general correlations of the shape and crystallinity of titanium dioxide (TiO2...