We report the preparation and hydrogenation performance of a single-site palladium catalyst that was obtained by the anchoring of Pd atoms into the cavities of mesoporous polymeric graphitic carbon nitride. The characterization of the material confirmed the atomic dispersion of the palladium phase throughout the sample. The catalyst was applied for three-phase hydrogenations of alkynes and nitroarenes in a continuous-flow reactor, showing its high activity and product selectivity in comparison with benchmark catalysts based on nanoparticles. Density functional theory calculations provided fundamental insights into the material structure and attributed the high catalyst activity and selectivity to the facile hydrogen activation and hydrocarb...
An atomically dispersed palladium (Pd) catalyst supported onto a defective nanodiamond-graphene (ND@...
Functionalized carbon nanotubes were used to produce Pd-based hydrogenation catalysts. Pd/CNT with s...
The selective hydrogenation of alkynes is an important reaction in the synthesis of fine and bulk ch...
We report the preparation and hydrogenation performance of a single-site palladium catalyst that was...
Site modification and isolation through selective poisoning comprise an effective strategy to enhanc...
Pd nanoparticles (1 wt %; mean size ∼4 nm) were supported on ∼2 μm sized, but few nanometers thick, ...
The reactions under which interstitial structures of Pd form are profoundly important and prevalent ...
Palladium-catalyzed hydrogenolysis is often the final step in challenging natural product total synt...
Discussed are the recent experimental and theoretical results on palladium-based catalysts for selec...
Pd/C catalysts are widely used for hydrogenation reactions in the chemical industry. One of the reas...
International audienceWe recently reported (R. Castro Contreras, B. Guicheret, B. F. Machado, C. Riv...
Palladium dynamics: Under hydrogenation conditions, saturating over-active palladium by carbon diffu...
Les catalyseurs à base de nanoparticules de Pd sont largement utilisés dans l’industrie des oléfines...
Many reactions, including selective hydrogenation of alkynes, take place on solid surfaces. These re...
An atomically dispersed palladium (Pd) catalyst supported onto a defective nanodiamond-graphene (ND@...
Functionalized carbon nanotubes were used to produce Pd-based hydrogenation catalysts. Pd/CNT with s...
The selective hydrogenation of alkynes is an important reaction in the synthesis of fine and bulk ch...
We report the preparation and hydrogenation performance of a single-site palladium catalyst that was...
Site modification and isolation through selective poisoning comprise an effective strategy to enhanc...
Pd nanoparticles (1 wt %; mean size ∼4 nm) were supported on ∼2 μm sized, but few nanometers thick, ...
The reactions under which interstitial structures of Pd form are profoundly important and prevalent ...
Palladium-catalyzed hydrogenolysis is often the final step in challenging natural product total synt...
Discussed are the recent experimental and theoretical results on palladium-based catalysts for selec...
Pd/C catalysts are widely used for hydrogenation reactions in the chemical industry. One of the reas...
International audienceWe recently reported (R. Castro Contreras, B. Guicheret, B. F. Machado, C. Riv...
Palladium dynamics: Under hydrogenation conditions, saturating over-active palladium by carbon diffu...
Les catalyseurs à base de nanoparticules de Pd sont largement utilisés dans l’industrie des oléfines...
Many reactions, including selective hydrogenation of alkynes, take place on solid surfaces. These re...
An atomically dispersed palladium (Pd) catalyst supported onto a defective nanodiamond-graphene (ND@...
Functionalized carbon nanotubes were used to produce Pd-based hydrogenation catalysts. Pd/CNT with s...
The selective hydrogenation of alkynes is an important reaction in the synthesis of fine and bulk ch...