Assemblies of Au (core)-Pt (shell) nanoparticles were prepared by chemical deposition of Pt metal onto colloidal Au particles that self-assembled onto substrates, since PtCl62- may be reduced to Pt(0) by the mild reducing agent NH2OH in the presence of gold nanoparticles. It is shown that the Pt deposition is isotropic and uniform on each particle via the combination of scanning electron microscopy and atomic force microscopy analysis. And the linear dependence of the particle size on the deposition time suggests that the deposition procedure is kinetically controlled. What is more, the kinetics of this Pt deposition onto Au nanoparticles is analyzed, which further reveals that the growth rate of the core-shell nanoparticles depends on the ...
We present an atomistic understanding of the evolution of the size distribution with temperature and...
Particle coarsening is the main cause for thermal deactivation and lifetime reduction of supported P...
Monodisperse platinum nanoparticles with controlled size were synthesized by polyol synthesis and su...
ABSTRACT: A method for the preparation of smooth deposits of Pt on Au nanorods is described, involvi...
Au/Pt nanoparticles show an optimized catalytic activity when compared with Pt nanoparticles because...
Au-Pt core-shell nanoparticles were prepared on glass surface by a seed growth method. Gold nanopart...
Nanoscale platinum materials are essential components in many technologies, including catalytic conv...
A fundamental understanding of the interplay between ligand-removal kinetics and metal aggregation d...
The factors that govern the reaction rate of Au/Pt bimetallic nanoparticles prepared in microemulsio...
A method for the preparation of smooth deposits of Pt on Au nanorods is described, involving sequent...
Pt-decorated Au nanostructures and bimetallic PtAu nanoparticles have been shown to act as catalysts...
Pt-decorated Au nanostructures and bimetallic PtAu nanoparticles have been shown to act as catalysts...
A growth mode was revealed by an in situ TEM study of nucleation and growth of Au on Pt icosahedral ...
Nanoparticles superlattices can be prepared by self assembly, under strict synthetic control, of hyb...
Gold-core platinum-shell (Au@Pt) nanoparticles with ultrathin platinum overlayers, ranging from subm...
We present an atomistic understanding of the evolution of the size distribution with temperature and...
Particle coarsening is the main cause for thermal deactivation and lifetime reduction of supported P...
Monodisperse platinum nanoparticles with controlled size were synthesized by polyol synthesis and su...
ABSTRACT: A method for the preparation of smooth deposits of Pt on Au nanorods is described, involvi...
Au/Pt nanoparticles show an optimized catalytic activity when compared with Pt nanoparticles because...
Au-Pt core-shell nanoparticles were prepared on glass surface by a seed growth method. Gold nanopart...
Nanoscale platinum materials are essential components in many technologies, including catalytic conv...
A fundamental understanding of the interplay between ligand-removal kinetics and metal aggregation d...
The factors that govern the reaction rate of Au/Pt bimetallic nanoparticles prepared in microemulsio...
A method for the preparation of smooth deposits of Pt on Au nanorods is described, involving sequent...
Pt-decorated Au nanostructures and bimetallic PtAu nanoparticles have been shown to act as catalysts...
Pt-decorated Au nanostructures and bimetallic PtAu nanoparticles have been shown to act as catalysts...
A growth mode was revealed by an in situ TEM study of nucleation and growth of Au on Pt icosahedral ...
Nanoparticles superlattices can be prepared by self assembly, under strict synthetic control, of hyb...
Gold-core platinum-shell (Au@Pt) nanoparticles with ultrathin platinum overlayers, ranging from subm...
We present an atomistic understanding of the evolution of the size distribution with temperature and...
Particle coarsening is the main cause for thermal deactivation and lifetime reduction of supported P...
Monodisperse platinum nanoparticles with controlled size were synthesized by polyol synthesis and su...