Developing better three-way catalysts with improved low-temperature performance is essential for cold start emission control. Density functional theory in combination with microkinetics simulations is used to predict reactivity of CO/NO/H2 mixtures on a small Pd cluster on CeO2(111). At low temperatures, N2O formation occurs via a N2O2 dimer over metallic Pd3. Part of the N2O intermediate product re-oxidizes Pd, limiting NO conversion and requiring rich conditions to obtain high N2 selectivity. High N2 selectivity at elevated temperatures is due to N2O decomposition on oxygen vacancies. Doping CeO2 by Fe is predicted to lead to more oxygen vacancies and a higher N2 selectivity, which is validated by the lower onset of N2 formation for a Pd ...
Materials which catalyse the reduction of gas phase nitrogen oxides (NOx), from combustion devices s...
Doping CeO 2 with Pd atoms has been associated with catalytic CO oxidation, but current surface mode...
Funding Information: This work was funded by [the National Natural Science Foundation of China] gran...
Developing better three-way catalysts with improved low-temperature performance is essential for col...
Developing better three-way catalysts with improved low-temperature performance is essential for col...
Three-Way Catalysts (TWC) were created to control pollutants emissions from gasoline engines by perf...
Development of new catalysts for controlling nitrogen oxides (NOx) emissions is an important technic...
In this work, we compare the CO oxidation performance of Pt single atom catalysts (SACs) prepared v...
Development of new catalysts for controlling nitrogen oxides $(NO_x)$ emissions is an important tech...
The effect of the three-dimensionally ordered macroporous (3DOM) structure and the Ni doping of CeO2...
CeO2 has attracted much attention in the field of selective catalytic reduction of NO with NH3 (NH3-...
Efficient promotion of the Pt/CeO/AlO catalytic system was achieved by the addition of two different...
CeO2-Al2O3 oxides prepared by co-precipitation (Ce+Al) or CeOx precipitation onto Al2O3 (Ce/Al) to o...
Density functional theory calculations were carried out to investigate the influence of doping trans...
Ceria-supported Pd is a promising heterogeneous catalyst for CO oxidation relevant to environmental ...
Materials which catalyse the reduction of gas phase nitrogen oxides (NOx), from combustion devices s...
Doping CeO 2 with Pd atoms has been associated with catalytic CO oxidation, but current surface mode...
Funding Information: This work was funded by [the National Natural Science Foundation of China] gran...
Developing better three-way catalysts with improved low-temperature performance is essential for col...
Developing better three-way catalysts with improved low-temperature performance is essential for col...
Three-Way Catalysts (TWC) were created to control pollutants emissions from gasoline engines by perf...
Development of new catalysts for controlling nitrogen oxides (NOx) emissions is an important technic...
In this work, we compare the CO oxidation performance of Pt single atom catalysts (SACs) prepared v...
Development of new catalysts for controlling nitrogen oxides $(NO_x)$ emissions is an important tech...
The effect of the three-dimensionally ordered macroporous (3DOM) structure and the Ni doping of CeO2...
CeO2 has attracted much attention in the field of selective catalytic reduction of NO with NH3 (NH3-...
Efficient promotion of the Pt/CeO/AlO catalytic system was achieved by the addition of two different...
CeO2-Al2O3 oxides prepared by co-precipitation (Ce+Al) or CeOx precipitation onto Al2O3 (Ce/Al) to o...
Density functional theory calculations were carried out to investigate the influence of doping trans...
Ceria-supported Pd is a promising heterogeneous catalyst for CO oxidation relevant to environmental ...
Materials which catalyse the reduction of gas phase nitrogen oxides (NOx), from combustion devices s...
Doping CeO 2 with Pd atoms has been associated with catalytic CO oxidation, but current surface mode...
Funding Information: This work was funded by [the National Natural Science Foundation of China] gran...