We present here the decomposition of methanol over Pt nanoparticles supported on a series of oxide powders. The samples tested may be roughly grouped in two categories consisting of large (∼15–18 nm) and small (∼8–9 nm) Pt particles deposited on reducible (CeO2, TiO2) and non-reducible (SiO2, ZrO2, Al2O3) supports. The smallest particles (∼8 nm), deposited on ZrO2, were found to be cationic and the most active for the decomposition of methanol. Furthermore, the stability of metallic Pt and its oxides was observed to be dependent on the choice of support. In all Pt containing samples the reaction proceeds via he direct decomposition of methanol, as no significant amounts of by-products were detected in the experimental range of 100–300 °C
We compare catalytic methanol oxidation reactions in the gas and liquid phases by focusing on the ki...
We have investigated the structure and chemical state of size-selected platinum nanoparticles (NPs) ...
The use of heterogeneous catalysis is well established in chemical synthesis, energy, and environmen...
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 size-dependent decomposition of methanol (MeOH) over narrowly distributed Pt nan...
We present here the size-dependent decomposition of methanol (MeOH) over narrowly distributed Pt nan...
We present here the size-dependent decomposition of methanol (MeOH) over narrowly distributed Pt nan...
The effect of pretreatment conditions on the oxidation state and activity of micelle-synthesized Pt ...
The effect of pretreatment conditions on the oxidation state and activity of micelle-synthesized Pt ...
This article discusses the performance of ZrO2-supported size-selected Pt nanoparticles for the deco...
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,...
This article discusses the performance of ZrO2-supported size-selected Pt nanoparticles for the deco...
We have investigated the structure and chemical state of size-selected platinum nanoparticles (NPs) ...
We compare catalytic methanol oxidation reactions in the gas and liquid phases by focusing on the ki...
We have investigated the structure and chemical state of size-selected platinum nanoparticles (NPs) ...
The use of heterogeneous catalysis is well established in chemical synthesis, energy, and environmen...
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 size-dependent decomposition of methanol (MeOH) over narrowly distributed Pt nan...
We present here the size-dependent decomposition of methanol (MeOH) over narrowly distributed Pt nan...
We present here the size-dependent decomposition of methanol (MeOH) over narrowly distributed Pt nan...
The effect of pretreatment conditions on the oxidation state and activity of micelle-synthesized Pt ...
The effect of pretreatment conditions on the oxidation state and activity of micelle-synthesized Pt ...
This article discusses the performance of ZrO2-supported size-selected Pt nanoparticles for the deco...
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,...
This article discusses the performance of ZrO2-supported size-selected Pt nanoparticles for the deco...
We have investigated the structure and chemical state of size-selected platinum nanoparticles (NPs) ...
We compare catalytic methanol oxidation reactions in the gas and liquid phases by focusing on the ki...
We have investigated the structure and chemical state of size-selected platinum nanoparticles (NPs) ...
The use of heterogeneous catalysis is well established in chemical synthesis, energy, and environmen...