Pt nanoparticles with controlled size (2, 4, and 6 nm) are synthesized and tested in ethanol oxidation by molecular oxygen at 60 °C to acetaldehyde and carbon dioxide both in the gas and liquid phases. The turnover frequency of the reaction is ∼80 times faster, and the activation energy is ∼5 times higher at the gas–solid interface compared to the liquid–solid interface. The catalytic activity is highly dependent on the size of the Pt nanoparticles; however, the selectivity is not size sensitive. Acetaldehyde is the main product in both media, while twice as much carbon dioxide was observed in the gas phase compared to the liquid phase. Added water boosts the reaction in the liquid phase; however, it acts as an inhibitor in the gas phase. T...
We synthesize platinum nanoparticles with controlled average sizes of 2, 4, 6, and 8 nm and use them...
1.8 nm Pt nanoparticles with narrow size distribution were anchored on mostly identical, amorphous s...
We compare catalytic methanol oxidation reactions in the gas and liquid phases by focusing on the ki...
Pt nanoparticles with controlled size (2, 4, and 6 nm) are synthesized and tested in ethanol oxidati...
Pt nanoparticles with controlled size (2, 4, and 6 nm) are synthesized and tested in ethanol oxidati...
Catalytic oxidation of alcohols is an essential process for energy conversion, production of fine ch...
Catalytic oxidation of alcohols is an essential process for energy conversion, production of fine ch...
Alcohol oxidation reaction over platinum nanoparticles with size ranging from 2 to 8 nm deposited on...
Catalytic oxidation of alcohols is an essential process for energy conversion, production of fine ch...
Catalytic oxidation of alcohols is an essential process for energy conversion, production of fine ch...
Catalytic oxidation of alcohols is an essential process for energy conversion, production of fine ch...
We synthesize platinum nanoparticles with controlled average sizes of 2, 4, 6, and 8 nm and use them...
Utilizing Pt nanoparticles of varying sizes (2–7 nm), it was found that the oxidation of 1-propanol ...
Utilizing Pt nanoparticles of varying sizes (2-7 nm), it was found that the oxidation of 1-propanol ...
We compare catalytic methanol oxidation reactions in the gas and liquid phases by focusing on the ki...
We synthesize platinum nanoparticles with controlled average sizes of 2, 4, 6, and 8 nm and use them...
1.8 nm Pt nanoparticles with narrow size distribution were anchored on mostly identical, amorphous s...
We compare catalytic methanol oxidation reactions in the gas and liquid phases by focusing on the ki...
Pt nanoparticles with controlled size (2, 4, and 6 nm) are synthesized and tested in ethanol oxidati...
Pt nanoparticles with controlled size (2, 4, and 6 nm) are synthesized and tested in ethanol oxidati...
Catalytic oxidation of alcohols is an essential process for energy conversion, production of fine ch...
Catalytic oxidation of alcohols is an essential process for energy conversion, production of fine ch...
Alcohol oxidation reaction over platinum nanoparticles with size ranging from 2 to 8 nm deposited on...
Catalytic oxidation of alcohols is an essential process for energy conversion, production of fine ch...
Catalytic oxidation of alcohols is an essential process for energy conversion, production of fine ch...
Catalytic oxidation of alcohols is an essential process for energy conversion, production of fine ch...
We synthesize platinum nanoparticles with controlled average sizes of 2, 4, 6, and 8 nm and use them...
Utilizing Pt nanoparticles of varying sizes (2–7 nm), it was found that the oxidation of 1-propanol ...
Utilizing Pt nanoparticles of varying sizes (2-7 nm), it was found that the oxidation of 1-propanol ...
We compare catalytic methanol oxidation reactions in the gas and liquid phases by focusing on the ki...
We synthesize platinum nanoparticles with controlled average sizes of 2, 4, 6, and 8 nm and use them...
1.8 nm Pt nanoparticles with narrow size distribution were anchored on mostly identical, amorphous s...
We compare catalytic methanol oxidation reactions in the gas and liquid phases by focusing on the ki...