Based on an experimental phenomenon that catalytic activity of Pt and Pd for oxygen reduction reaction (ORR) changes with catalyst supports from C to TiO2, density function theory (DFT) was used to elucidate the cause behind the difference in catalysis caused by catalyst supports. First, factors closely associated with the first electron transfer of the ORR were assessed in the light of quantum chemistry. Then intermediate (atomic oxygen, O) adsorption strength on the catalyst surface was calculated. The results show that, in terms of minimum energy difference, the best orbital symmetry match, and the maximum orbital overlap, TiO2 does bring about a very positive effect on catalysts Pd/TiO2 for the first electron transfer of the ORR. Especi...
ORR (Oxygen Reduction Reaction) has been studied on Pt-Pd/C catalyst both experimentally and theoret...
Lattice oxygen of TiO2 is activated by the substitution of Pd ion in its lattice. Ti1-xPdxO2-x (x = ...
Metal oxide supports often play an active part in heterogeneous catalysis by moderating both the str...
Based on an experimental phenomenon that catalytic activity of Pt and Pd for oxygen reduction reacti...
Distinctions between supported Au and Pt catalysts on TiO<sub>2</sub>(110) for CO oxidation have bee...
The oxygen-binding energy is one of the primary factors determining catalytic activity in oxidation ...
The kinetic, electronic and spectroscopic properties of two‐dimensional oxide‐supported catalysts we...
We report here density functional theory (DFT) studies (PBE) of the reaction intermediates and barri...
The kinetic, electronic and spectroscopic properties of two-dimensional oxide-supportedcatalysts wer...
The surface properties of oxidic supports and their interaction with the supported metals play criti...
We report here results of our density functional theory based computational studies of the electroni...
Reactions on catalytically active surfaces often involve complex mechanisms with multiple interactio...
The oxygen reduction reaction (ORR) on platinum catalysts is essential in fuel cells. Quantitative p...
Adsorbed metal atoms and metal doping onto TiO2 can effectively enhance the optical and photocatalyt...
Using quantum mechanics calculations, we have studied the segregation energy with adsorbed O and OH ...
ORR (Oxygen Reduction Reaction) has been studied on Pt-Pd/C catalyst both experimentally and theoret...
Lattice oxygen of TiO2 is activated by the substitution of Pd ion in its lattice. Ti1-xPdxO2-x (x = ...
Metal oxide supports often play an active part in heterogeneous catalysis by moderating both the str...
Based on an experimental phenomenon that catalytic activity of Pt and Pd for oxygen reduction reacti...
Distinctions between supported Au and Pt catalysts on TiO<sub>2</sub>(110) for CO oxidation have bee...
The oxygen-binding energy is one of the primary factors determining catalytic activity in oxidation ...
The kinetic, electronic and spectroscopic properties of two‐dimensional oxide‐supported catalysts we...
We report here density functional theory (DFT) studies (PBE) of the reaction intermediates and barri...
The kinetic, electronic and spectroscopic properties of two-dimensional oxide-supportedcatalysts wer...
The surface properties of oxidic supports and their interaction with the supported metals play criti...
We report here results of our density functional theory based computational studies of the electroni...
Reactions on catalytically active surfaces often involve complex mechanisms with multiple interactio...
The oxygen reduction reaction (ORR) on platinum catalysts is essential in fuel cells. Quantitative p...
Adsorbed metal atoms and metal doping onto TiO2 can effectively enhance the optical and photocatalyt...
Using quantum mechanics calculations, we have studied the segregation energy with adsorbed O and OH ...
ORR (Oxygen Reduction Reaction) has been studied on Pt-Pd/C catalyst both experimentally and theoret...
Lattice oxygen of TiO2 is activated by the substitution of Pd ion in its lattice. Ti1-xPdxO2-x (x = ...
Metal oxide supports often play an active part in heterogeneous catalysis by moderating both the str...