Understanding the atomic mechanism of low-temperature CO oxidation on a heterogeneous catalyst is challenging. We performed density functional theory (DFT) calculations to identify the surface structure and reaction mechanism responsible for low-temperature CO oxidation on Pd/CeO2(100) surfaces. DFT calculations reveal the formation of a unique zigzag chain structure by the oxygen and Ce atoms of the topmost surface of CeO2(100) with Pd atoms located between the zigzag chains. O(2)adsorbed on such Pd atoms is stable in the presence of CO but plays a very important role in lowering the activation barrier for low-temperature CO oxidation by forming a square-planar PdO(4)structure and facilitating further O(2)adsorption.In-situRaman spectrosco...
Doping CeO 2 with Pd atoms has been associated with catalytic CO oxidation, but current surface mode...
Pd/CeO2 is an active component in emission control catalysts for CO oxidation. Nanostructured CeO2 p...
The possible formation of oxides or thin oxide films (surface oxides) on late transition-metal surfa...
Ceria-supported Pd is one of the main components in modern three-way catalysts in automotive applica...
Pd/CeO2 is an active component in emission control catalysts for CO oxidation. Nanostructured CeO2 p...
Possible reaction paths for CO oxidation on ceria-supported Au nanoparticle catalysts were modeled b...
Ceria-supported Pd is a promising heterogeneous catalyst for CO oxidation relevant to environmental ...
\u3cp\u3eCeria-supported Pd is one of the main components in modern three-way catalysts in automotiv...
The mechanism of CO oxidation by a CeO2(110)-supported gold atom has been investigated by DFT calcul...
ABSTRACT: Under technologically relevant oxygen-rich conditions, the reaction mechanism of CO oxidat...
Understanding strong metal-support interactions is crucially important for developing atom-efficient...
Doping CeO 2 with Pd atoms has been associated with catalytic CO oxidation, but current surface mode...
Doping CeO 2 with Pd atoms has been associated with catalytic CO oxidation, but current surface mode...
Pd/CeO2 is an active component in emission control catalysts for CO oxidation. Nanostructured CeO2 p...
The possible formation of oxides or thin oxide films (surface oxides) on late transition-metal surfa...
Ceria-supported Pd is one of the main components in modern three-way catalysts in automotive applica...
Pd/CeO2 is an active component in emission control catalysts for CO oxidation. Nanostructured CeO2 p...
Possible reaction paths for CO oxidation on ceria-supported Au nanoparticle catalysts were modeled b...
Ceria-supported Pd is a promising heterogeneous catalyst for CO oxidation relevant to environmental ...
\u3cp\u3eCeria-supported Pd is one of the main components in modern three-way catalysts in automotiv...
The mechanism of CO oxidation by a CeO2(110)-supported gold atom has been investigated by DFT calcul...
ABSTRACT: Under technologically relevant oxygen-rich conditions, the reaction mechanism of CO oxidat...
Understanding strong metal-support interactions is crucially important for developing atom-efficient...
Doping CeO 2 with Pd atoms has been associated with catalytic CO oxidation, but current surface mode...
Doping CeO 2 with Pd atoms has been associated with catalytic CO oxidation, but current surface mode...
Pd/CeO2 is an active component in emission control catalysts for CO oxidation. Nanostructured CeO2 p...
The possible formation of oxides or thin oxide films (surface oxides) on late transition-metal surfa...