Carbon-supported palladium (Pd/C) catalysts often display broad or multimodal Pd particle size distributions detrimental for their performance. Therefore, the formation of large particles during preparation should be better understood and avoided. We prepared catalysts with up to 10 wt% Pd supported on oxygen-functionalized carbon nanotubes and activated carbon via liquid-phase reduction. It was inferred that small Pd particles (∼1 nm) were formed from Pd ions adsorbed on the carbon. At higher loadings, up to 65% of the Pd ended up in larger particles (>10 nm) probably formed from Pd ions in solution, lowering the Pd-normalized activity in the hydrogenation of cinnamaldehyde 4-fold compared to samples with small particles only. Three key fa...
Surface activity of heterogeneous catalysts can be enhanced if their sizes are reduced to nanometers...
Surface activity of heterogeneous catalysts can be enhanced if their sizes are reduced to nanometers...
0016-2361Abstract The catalytic activity of carbon-supported Pd nanoparticles (NPs) was investigated...
Carbon-supported palladium (Pd/C) catalysts often display broad or multimodal Pd particle size distr...
Carbon-supported palladium (Pd/C) catalysts often display broad or multimodal Pd particle size distr...
Carbon-supported palladium (Pd/C) catalysts often display broad or multimodal Pd particle size distr...
Carbon-supported palladium (Pd/C) catalysts often display broad or multimodal Pd particle size distr...
Carbon-supported palladium (Pd/C) catalysts often display broad or multimodal Pd particle size distr...
The effects of the metal deposition and activation methods on metal particle size and distribution w...
The effects of the metal deposition and activation methods on metal particle size and distribution w...
The effects of the metal deposition and activation methods on metal particle size and distribution w...
The effects of the metal deposition and activation methods on metal particle size and distribution w...
<p>Carbon nanotubes (CNTs), activated carbon (AC), graphene, and aluminum oxide (Al<sub>2</sub>O<sub...
In this study, we present a simple process to obtain highly dispersed palladium nanoparticles on Vul...
Hydrogenations and hydrodeoxygenations represent two of the most important reactions in the producti...
Surface activity of heterogeneous catalysts can be enhanced if their sizes are reduced to nanometers...
Surface activity of heterogeneous catalysts can be enhanced if their sizes are reduced to nanometers...
0016-2361Abstract The catalytic activity of carbon-supported Pd nanoparticles (NPs) was investigated...
Carbon-supported palladium (Pd/C) catalysts often display broad or multimodal Pd particle size distr...
Carbon-supported palladium (Pd/C) catalysts often display broad or multimodal Pd particle size distr...
Carbon-supported palladium (Pd/C) catalysts often display broad or multimodal Pd particle size distr...
Carbon-supported palladium (Pd/C) catalysts often display broad or multimodal Pd particle size distr...
Carbon-supported palladium (Pd/C) catalysts often display broad or multimodal Pd particle size distr...
The effects of the metal deposition and activation methods on metal particle size and distribution w...
The effects of the metal deposition and activation methods on metal particle size and distribution w...
The effects of the metal deposition and activation methods on metal particle size and distribution w...
The effects of the metal deposition and activation methods on metal particle size and distribution w...
<p>Carbon nanotubes (CNTs), activated carbon (AC), graphene, and aluminum oxide (Al<sub>2</sub>O<sub...
In this study, we present a simple process to obtain highly dispersed palladium nanoparticles on Vul...
Hydrogenations and hydrodeoxygenations represent two of the most important reactions in the producti...
Surface activity of heterogeneous catalysts can be enhanced if their sizes are reduced to nanometers...
Surface activity of heterogeneous catalysts can be enhanced if their sizes are reduced to nanometers...
0016-2361Abstract The catalytic activity of carbon-supported Pd nanoparticles (NPs) was investigated...