Strain in Pt nanoalloys induced by the secondary metal has long been suggested as a major contributor to the modification of catalytic properties. Here, we investigate strain in PtCo nanoparticles using a combination of computational modelling and microscopy experiments. We have used a combination of molecular dynamics (MD) and large-scale density functional theory (DFT) for our models, alongside experimental work using annular dark field scanning transmission electron microscopy (ADF-STEM). We have performed extensive validation of the interatomic potential against DFT using a Pt568Co18 nanoparticle. Modelling gives access to 3 dimensional structures that can be compared to the 2D ADF-STEM images, which we use to build an understanding of ...
International audienceSurface strain is widely employed in gas phase catalysis and electrocatalysis ...
International audienceSurface strain is widely employed in gas phase catalysis and electrocatalysis ...
International audienceSurface strain is widely employed in gas phase catalysis and electrocatalysis ...
Strain in Pt nanoalloys induced by the secondary metal has long been suggested as a major contributo...
Surface strain is widely employed in gas phase catalysis and electrocatalysis to control the binding...
Surface strain is widely employed in gas phase catalysis and electrocatalysis to control the binding...
Surface strain is widely employed in gas phase catalysis and electrocatalysis to control the binding...
\u3cp\u3eThe catalytic activity of metal nanoparticles can be altered by applying strain, which chan...
Surface strain is widely employed in gas phase catalysis and electrocatalysis to control the binding...
The catalytic activity of metal nanoparticles can be altered by applying strain, which changes the c...
The catalytic activity of metal nanoparticles can be altered by applying strain, which changes the c...
The catalytic activity of metal nanoparticles can be altered by applying strain, which changes the c...
The catalytic activity of metal nanoparticles can be altered by applying strain, which changes the c...
The catalytic activity of metal nanoparticles can be altered by applying strain, which changes the c...
International audienceSurface strain is widely employed in gas phase catalysis and electrocatalysis ...
International audienceSurface strain is widely employed in gas phase catalysis and electrocatalysis ...
International audienceSurface strain is widely employed in gas phase catalysis and electrocatalysis ...
International audienceSurface strain is widely employed in gas phase catalysis and electrocatalysis ...
Strain in Pt nanoalloys induced by the secondary metal has long been suggested as a major contributo...
Surface strain is widely employed in gas phase catalysis and electrocatalysis to control the binding...
Surface strain is widely employed in gas phase catalysis and electrocatalysis to control the binding...
Surface strain is widely employed in gas phase catalysis and electrocatalysis to control the binding...
\u3cp\u3eThe catalytic activity of metal nanoparticles can be altered by applying strain, which chan...
Surface strain is widely employed in gas phase catalysis and electrocatalysis to control the binding...
The catalytic activity of metal nanoparticles can be altered by applying strain, which changes the c...
The catalytic activity of metal nanoparticles can be altered by applying strain, which changes the c...
The catalytic activity of metal nanoparticles can be altered by applying strain, which changes the c...
The catalytic activity of metal nanoparticles can be altered by applying strain, which changes the c...
The catalytic activity of metal nanoparticles can be altered by applying strain, which changes the c...
International audienceSurface strain is widely employed in gas phase catalysis and electrocatalysis ...
International audienceSurface strain is widely employed in gas phase catalysis and electrocatalysis ...
International audienceSurface strain is widely employed in gas phase catalysis and electrocatalysis ...
International audienceSurface strain is widely employed in gas phase catalysis and electrocatalysis ...