Supported palladium nanoparticles, prepared by reducing the active metal in the presence of the hexadecyl(2-hydroxyethyl)dimethylammonium dihydrogen-phosphate (HHDMA) ligand and depositing the resulting colloids on titanium silicate (TiSi2O6), represent a proven alternative to the archetypal poisoned catalysts in industrially-relevant selective hydrogenations. To date, a key aspect in the design of these hybrid nanocatalysts remains unaddressed, namely the impact of the ligand content on the catalytic behaviour. In order to assess the structural and associated catalytic implications of this variable, we have prepared a series of Pd-HHDMA/TiSi2O6 catalysts with different HHDMA content (0.3-16.8 wt%), keeping the average particle size (5 nm) ...
Palladium nanoparticles modified with the hexadecyl-2-hydroxyethyl-dimethylammonium dihydrogen phosp...
Nanoparticles are widely used in heterogeneous catalysis and generally, they are supported on oxides...
Monodispersed Pd nanoparticles (NPs) have been prepared by colloidal technique and deposited on a st...
Supported palladium nanoparticles, prepared by reducing the active metal in the presence of the hexa...
Site modification and isolation through selective poisoning comprise an effective strategy to enhanc...
Ligand-modified palladium nanoparticles deposited on a carbon carrier efficiently catalyze the direc...
The activity and selectivity of structure-sensitive reactions are strongly correlated with the shape...
Supported Au-Pd nanoparticles are an excellent catalyst for the hydrogenation of alkynes, a crucial ...
We report the preparation and hydrogenation performance of a single-site palladium catalyst that was...
This contribution targets the first comprehensive understanding of the next-generation catalyst for ...
This contribution targets the first comprehensive understanding of the next-generation catalyst for ...
Palladium nanoparticles modified with the hexadecyl-2-hydroxyethyl-dimethylammonium dihydrogen phosp...
Nanoparticles are widely used in heterogeneous catalysis and generally, they are supported on oxides...
Monodispersed Pd nanoparticles (NPs) have been prepared by colloidal technique and deposited on a st...
Supported palladium nanoparticles, prepared by reducing the active metal in the presence of the hexa...
Site modification and isolation through selective poisoning comprise an effective strategy to enhanc...
Ligand-modified palladium nanoparticles deposited on a carbon carrier efficiently catalyze the direc...
The activity and selectivity of structure-sensitive reactions are strongly correlated with the shape...
Supported Au-Pd nanoparticles are an excellent catalyst for the hydrogenation of alkynes, a crucial ...
We report the preparation and hydrogenation performance of a single-site palladium catalyst that was...
This contribution targets the first comprehensive understanding of the next-generation catalyst for ...
This contribution targets the first comprehensive understanding of the next-generation catalyst for ...
Palladium nanoparticles modified with the hexadecyl-2-hydroxyethyl-dimethylammonium dihydrogen phosp...
Nanoparticles are widely used in heterogeneous catalysis and generally, they are supported on oxides...
Monodispersed Pd nanoparticles (NPs) have been prepared by colloidal technique and deposited on a st...