A growth mode was revealed by an in situ TEM study of nucleation and growth of Au on Pt icosahedral nanoparticles. Quantitative analysis of growth kinetics was carried out based on real-time TEM data, which shows the process involves: (1) deposition of Au on corner sites of Pt icosahedral nanoparticles, (2) diffusion of Au from corners to terraces and edges, and (3) subsequent layer-by-layer growth of Au on Au surfaces to form Pt@Au core–shell nanoparticles. The in situ TEM results indicate diffusion of Au from corner islands to terraces and edges is a kinetically controlled growth, as evidenced by a measurement of diffusion coefficients for these growth processes. We demonstrated that in situ electron microscopy is a valuable tool for quan...
The increasing interest in atomic layer deposition (ALD) of Pt for the controlled synthesis of suppo...
Nanoparticle growth has long been a significant challenge in nanotechnology and catalysis, but the l...
The controlled growth of surface-supported metal nanoparticles (NPs) is essential to a broad range o...
A growth mode was revealed by an in situ TEM study of nucleation and growth of Au on Pt icosahedral ...
We have investigated the growth of submonolayer coverage of platinum on two gold surfaces (Au(1 1 1)...
Assemblies of Au (core)-Pt (shell) nanoparticles were prepared by chemical deposition of Pt metal on...
The growth of colloidal nanoparticles is simultaneously driven by kinetic and thermodynamic effects ...
In situ microscopy of colloidal nanocrystal growth offers a unique opportunity to acquire direct and...
Understanding the mechanisms behind crystal nucleation and growth is a fundamental requirement for t...
Measurements of solution-phase crystal growth provide mechanistic information that is helpful in des...
An understanding of the hierarchical nanostructure formation is of significant importance for the de...
In this work, a systematic study of the effect of electron dose rate, solute concentration, imaging ...
Recent advances in liquid cell (scanning) transmission electron microscopy (S)TEM has enabled <i>in ...
International audienceThe growth morphology of iron on Au(7 8 8) has been investigated from 45 K to ...
Scanning tunnelling microscopy (STM) has been used to study the initial stages of Pt deposition on t...
The increasing interest in atomic layer deposition (ALD) of Pt for the controlled synthesis of suppo...
Nanoparticle growth has long been a significant challenge in nanotechnology and catalysis, but the l...
The controlled growth of surface-supported metal nanoparticles (NPs) is essential to a broad range o...
A growth mode was revealed by an in situ TEM study of nucleation and growth of Au on Pt icosahedral ...
We have investigated the growth of submonolayer coverage of platinum on two gold surfaces (Au(1 1 1)...
Assemblies of Au (core)-Pt (shell) nanoparticles were prepared by chemical deposition of Pt metal on...
The growth of colloidal nanoparticles is simultaneously driven by kinetic and thermodynamic effects ...
In situ microscopy of colloidal nanocrystal growth offers a unique opportunity to acquire direct and...
Understanding the mechanisms behind crystal nucleation and growth is a fundamental requirement for t...
Measurements of solution-phase crystal growth provide mechanistic information that is helpful in des...
An understanding of the hierarchical nanostructure formation is of significant importance for the de...
In this work, a systematic study of the effect of electron dose rate, solute concentration, imaging ...
Recent advances in liquid cell (scanning) transmission electron microscopy (S)TEM has enabled <i>in ...
International audienceThe growth morphology of iron on Au(7 8 8) has been investigated from 45 K to ...
Scanning tunnelling microscopy (STM) has been used to study the initial stages of Pt deposition on t...
The increasing interest in atomic layer deposition (ALD) of Pt for the controlled synthesis of suppo...
Nanoparticle growth has long been a significant challenge in nanotechnology and catalysis, but the l...
The controlled growth of surface-supported metal nanoparticles (NPs) is essential to a broad range o...