Platinum nanocrystals with a fine control of the crystal domain size in the range 1.0−2.2 nm are produced by tuning the NaOH concentration during the UV-induced reduction of H2PtCl6 in surfactant-free alkaline ethylene glycol. The colloidal solutions obtained are characterized by transmission electron microscopy and pair distribution function analysis, allowing analysis of both atomic and nanoscale structures. The obtained nanoparticles exhibit a face-centered cubic crystal structure even for the smallest nanoparticles, and the cubic unit cell parameter is significantly reduced with decreasing crystallite size. It is further demonstrated how the “UV-approach” can be used to achieve spatial control of the nucleation and growth of ...
We recently introduced a new method to synthesize an active and stable Pt catalyst, namely thermo-de...
Colloidal platinum nanoparticles are obtained via a surfactant-free polyol process in alkaline ethyl...
La synthèse par voie chimique en solution permet d’obtenir des nanoparticules de caractéristiques st...
Platinum nanocrystals with a fine control of the crystal domain size in the range 1.0–2.2 nm are pro...
Platinum nanocrystals with a fine control of the crystal domain size in the range 1.0–2.2 nm are pro...
Controlled growth of far-from-equilibrium-shaped nanoparticles with size selection is essential for ...
Discovering new alternative catalysts for (industrial) organic reactions is an important and challan...
Noble-metal nanocrystals with well-controlled attributes have found use in a variety of applications...
New methods for the facile synthesis of palladium nanocrystals were developed, with a focus on react...
In this research a high yield, homogenous and fast bottom-up wet-chemical method has been carried ou...
AbstractCurrent chemical methods of synthesis have shown limited success in the fabrication of nanom...
Platinum (Pt) nanocrystals have been applied to a wide variety of applications due to their excellen...
Water has long been used and regarded as a solvent in the synthesis of noble-metal colloids, but its...
The shape control of platinum nanocrystals is significant to the enhancement of their catalytic perf...
Synthetic methods that allow for the controlled design of well-defined Pt nanoparticles are highly d...
We recently introduced a new method to synthesize an active and stable Pt catalyst, namely thermo-de...
Colloidal platinum nanoparticles are obtained via a surfactant-free polyol process in alkaline ethyl...
La synthèse par voie chimique en solution permet d’obtenir des nanoparticules de caractéristiques st...
Platinum nanocrystals with a fine control of the crystal domain size in the range 1.0–2.2 nm are pro...
Platinum nanocrystals with a fine control of the crystal domain size in the range 1.0–2.2 nm are pro...
Controlled growth of far-from-equilibrium-shaped nanoparticles with size selection is essential for ...
Discovering new alternative catalysts for (industrial) organic reactions is an important and challan...
Noble-metal nanocrystals with well-controlled attributes have found use in a variety of applications...
New methods for the facile synthesis of palladium nanocrystals were developed, with a focus on react...
In this research a high yield, homogenous and fast bottom-up wet-chemical method has been carried ou...
AbstractCurrent chemical methods of synthesis have shown limited success in the fabrication of nanom...
Platinum (Pt) nanocrystals have been applied to a wide variety of applications due to their excellen...
Water has long been used and regarded as a solvent in the synthesis of noble-metal colloids, but its...
The shape control of platinum nanocrystals is significant to the enhancement of their catalytic perf...
Synthetic methods that allow for the controlled design of well-defined Pt nanoparticles are highly d...
We recently introduced a new method to synthesize an active and stable Pt catalyst, namely thermo-de...
Colloidal platinum nanoparticles are obtained via a surfactant-free polyol process in alkaline ethyl...
La synthèse par voie chimique en solution permet d’obtenir des nanoparticules de caractéristiques st...