We present here a study of methanol (MeOH) decomposition over a series of bimetallic Pt-M catalysts, with M = Au, Pd, Ru, Fe. All samples have the same initial size distribution (∼3 nm nanoparticle height), support (ZrO2), and preparation conditions. Therefore, differences in the electronic and catalytic properties of the samples tested are related directly to the addition of the secondary metals (M). We find that the oxidation state as well as the activity of Pt is heavily influenced by the addition of the secondary metal. PtO is found to be highly stable in these systems and increasing concentrations of metallic Pt are associated with the surface segregation of metal M due to its affinity for the oxygen present during air annealing
Core-shell structured Au-PtPd/C and Au-Pt/C nanoparticles (NPs) were prepared using a successive red...
The use of heterogeneous catalysis is well established in chemical synthesis, energy, and environmen...
We have investigated the structure and chemical state of size-selected platinum nanoparticles (NPs) ...
We present here a study of methanol (MeOH) decomposition over a series of bimetallic Pt-M catalysts,...
We present here a study of methanol (MeOH) decomposition over a series of bimetallic Pt-M catalysts,...
We present here the decomposition of methanol over Pt nanoparticles supported on a series of oxide p...
We present here the decomposition of methanol over Pt nanoparticles supported on a series of oxide p...
We present here the decomposition of methanol over Pt nanoparticles supported on a series of oxide p...
1317-1322Partial oxidation of methanol over Au/CeO₂ and Au-Pd/CeO₂ catalysts is reported here. The c...
We compare catalytic methanol oxidation reactions in the gas and liquid phases by focusing on the ki...
Pd or Pt alloyed with a secondary metal are the typical catalysts at the anode for the direct oxidat...
Understanding the intrinsic relationship between the catalytic activity of bimetallic nanoparticles ...
We have investigated the structure and chemical state of size-selected platinum nanoparticles (NPs) ...
The reaction of methanol on Pt-Au bimetallic clusters on TiO 2(110) with varying bulk Au fractions h...
In this study, two groups of carbon supported PtPd samples with different percentages of metals were...
Core-shell structured Au-PtPd/C and Au-Pt/C nanoparticles (NPs) were prepared using a successive red...
The use of heterogeneous catalysis is well established in chemical synthesis, energy, and environmen...
We have investigated the structure and chemical state of size-selected platinum nanoparticles (NPs) ...
We present here a study of methanol (MeOH) decomposition over a series of bimetallic Pt-M catalysts,...
We present here a study of methanol (MeOH) decomposition over a series of bimetallic Pt-M catalysts,...
We present here the decomposition of methanol over Pt nanoparticles supported on a series of oxide p...
We present here the decomposition of methanol over Pt nanoparticles supported on a series of oxide p...
We present here the decomposition of methanol over Pt nanoparticles supported on a series of oxide p...
1317-1322Partial oxidation of methanol over Au/CeO₂ and Au-Pd/CeO₂ catalysts is reported here. The c...
We compare catalytic methanol oxidation reactions in the gas and liquid phases by focusing on the ki...
Pd or Pt alloyed with a secondary metal are the typical catalysts at the anode for the direct oxidat...
Understanding the intrinsic relationship between the catalytic activity of bimetallic nanoparticles ...
We have investigated the structure and chemical state of size-selected platinum nanoparticles (NPs) ...
The reaction of methanol on Pt-Au bimetallic clusters on TiO 2(110) with varying bulk Au fractions h...
In this study, two groups of carbon supported PtPd samples with different percentages of metals were...
Core-shell structured Au-PtPd/C and Au-Pt/C nanoparticles (NPs) were prepared using a successive red...
The use of heterogeneous catalysis is well established in chemical synthesis, energy, and environmen...
We have investigated the structure and chemical state of size-selected platinum nanoparticles (NPs) ...