This work aims to clarify the nanostructural transformation accompanying the loss of activity and selectivity for the hydrogen peroxide synthesis of palladium and gold–palladium nanoparticles supported on N‐functionalized carbon nanotubes. High‐resolution X‐ray photoemission spectroscopy (XPS) allows the discrimination of metallic palladium, electronically modified metallic palladium hosting impurities, and cationic palladium. This is paralleled by the morphological heterogeneity observed by high‐resolution TEM, in which nanoparticles with an average size of 2 nm coexisted with very small palladium clusters. The morphological distribution of palladium is modified after reaction through sintering and dissolution/redeposition pathways. The lo...
In order to design catalytic materials, we need to understand the essential causes for material prop...
Carbon-supported palladium (Pd/C) catalysts often display broad or multimodal Pd particle size distr...
Controlling the charge transfer between a semiconducting catalyst carrier and the supported transiti...
This work aims to clarify the nanostructural transformation accompanying the loss of activity and se...
This work aims to clarify the nanostructural transformation accompanying the loss of activity and se...
Catalysts based on Pd and Pd–Au nanoparticles supported on N-doped carbon nanotubes (N22O2. The init...
It is crucial to accurately describe the interaction between the surface functionality and the suppo...
The development of model catalyst systems for heterogeneous catalysis going beyond the metal single ...
Palladium dynamics: Under hydrogenation conditions, saturating over-active palladium by carbon diffu...
International audienceThe water forming reaction (WFR) between oxygen and hydrogen on metal surfaces...
Surface activity of heterogeneous catalysts can be enhanced if their sizes are reduced to nanometers...
Functionalized carbon nanotubes were used to produce Pd-based hydrogenation catalysts. Pd/CNT with s...
The behavior of Pd nanoparticles deposited by sol-immobilization on N-doped nanocarbon (carbon nanot...
Palladium nanoparticles have been studied extensively as catalysts for the direct synthesis of hydro...
The behavior of Pd nanoparticles deposited by sol-immobilization on N-doped nanocarbon (carbon nanot...
In order to design catalytic materials, we need to understand the essential causes for material prop...
Carbon-supported palladium (Pd/C) catalysts often display broad or multimodal Pd particle size distr...
Controlling the charge transfer between a semiconducting catalyst carrier and the supported transiti...
This work aims to clarify the nanostructural transformation accompanying the loss of activity and se...
This work aims to clarify the nanostructural transformation accompanying the loss of activity and se...
Catalysts based on Pd and Pd–Au nanoparticles supported on N-doped carbon nanotubes (N22O2. The init...
It is crucial to accurately describe the interaction between the surface functionality and the suppo...
The development of model catalyst systems for heterogeneous catalysis going beyond the metal single ...
Palladium dynamics: Under hydrogenation conditions, saturating over-active palladium by carbon diffu...
International audienceThe water forming reaction (WFR) between oxygen and hydrogen on metal surfaces...
Surface activity of heterogeneous catalysts can be enhanced if their sizes are reduced to nanometers...
Functionalized carbon nanotubes were used to produce Pd-based hydrogenation catalysts. Pd/CNT with s...
The behavior of Pd nanoparticles deposited by sol-immobilization on N-doped nanocarbon (carbon nanot...
Palladium nanoparticles have been studied extensively as catalysts for the direct synthesis of hydro...
The behavior of Pd nanoparticles deposited by sol-immobilization on N-doped nanocarbon (carbon nanot...
In order to design catalytic materials, we need to understand the essential causes for material prop...
Carbon-supported palladium (Pd/C) catalysts often display broad or multimodal Pd particle size distr...
Controlling the charge transfer between a semiconducting catalyst carrier and the supported transiti...