Gold nanoparticles stabilized by cerium oxides have been widely studied as catalysts in a number of important chemical reactions, such as CO oxidation, the water–gas shift reaction, as well as selective oxidation and hydrogenation reactions. An important aspect of catalysis by Au/CeO2 is the interaction between Au and the underlying ceria. Of determining importance appear to be the size of the metal nanoparticles or clusters, the ability of the ceria to provide oxygen atoms during catalytic reactions, and the influence of the oxidation state of the gold atoms at the interface perimeter. In this context, a strong morphology-dependent reactivity has been recognized due to different surface planes of ceria presented, namely {111}, {110}, and {...
Gold clusters with ultrasmall size and special structure are highly attractive for heterogeneous cat...
Gold nanoparticles (NPs) have attracted attention due to their superior catalytic performance in CO ...
Gold nanoparticles supported on ceria{110} crystal planes were more reactive than on ceria{111} and ...
Gold nanoparticles stabilized by cerium oxides have been widely studied as catalysts in a number of ...
The interaction of gold atoms with CeO2 nanocrystals having rod and cube shapes has been examined by...
Well-defined {100}-faceted ceria nanocube-supported gold nanoclusters with various morphologies, inc...
Abstract The interaction of gold atoms with CeO 2 nanocrystals having rod and cube shapes has been e...
Au/CeO2 catalysts are highly active for low-temperature CO oxidation and water gas shift reaction, b...
We report an aberration-corrected electron microscopy analysis of the adhesion and atomic structures...
Au/CeO2 (0.25% wt. Au) catalysts were prepared by anchoring preformed Au nanoparticles over ceria po...
A partial transformation of the {100} surfaces of ceria nanocubes into a set of nanometer-heighted, ...
Density functional theory (DFT) calculations are used to identify correlations among reactivity, str...
Engineering the shape and size of catalyst particles and the interface between different components ...
The crucial role of the metal–oxide interface in the catalysts of the water–gas shift (WGS) reaction...
A partial transformation of the {100} surfaces of ceria nanocubes into a set of nanometer-heighted, ...
Gold clusters with ultrasmall size and special structure are highly attractive for heterogeneous cat...
Gold nanoparticles (NPs) have attracted attention due to their superior catalytic performance in CO ...
Gold nanoparticles supported on ceria{110} crystal planes were more reactive than on ceria{111} and ...
Gold nanoparticles stabilized by cerium oxides have been widely studied as catalysts in a number of ...
The interaction of gold atoms with CeO2 nanocrystals having rod and cube shapes has been examined by...
Well-defined {100}-faceted ceria nanocube-supported gold nanoclusters with various morphologies, inc...
Abstract The interaction of gold atoms with CeO 2 nanocrystals having rod and cube shapes has been e...
Au/CeO2 catalysts are highly active for low-temperature CO oxidation and water gas shift reaction, b...
We report an aberration-corrected electron microscopy analysis of the adhesion and atomic structures...
Au/CeO2 (0.25% wt. Au) catalysts were prepared by anchoring preformed Au nanoparticles over ceria po...
A partial transformation of the {100} surfaces of ceria nanocubes into a set of nanometer-heighted, ...
Density functional theory (DFT) calculations are used to identify correlations among reactivity, str...
Engineering the shape and size of catalyst particles and the interface between different components ...
The crucial role of the metal–oxide interface in the catalysts of the water–gas shift (WGS) reaction...
A partial transformation of the {100} surfaces of ceria nanocubes into a set of nanometer-heighted, ...
Gold clusters with ultrasmall size and special structure are highly attractive for heterogeneous cat...
Gold nanoparticles (NPs) have attracted attention due to their superior catalytic performance in CO ...
Gold nanoparticles supported on ceria{110} crystal planes were more reactive than on ceria{111} and ...