The use of a laser ablation cluster source made it recently possible to study Ostwald ripening of supported Pt nanoclusters with atomic control of the initial size distributions, such as Pt-68 or Pt-22 + Pt-68 (K. Wettergren et al., Nano Lett. (2014)). Monodispersed clusters were found to be more stable compared to the bimodal ones and to those with wide polydisperse initial size distribution. To clarify the results of the experiments, we present here the corresponding kinetic Monte Carlo simulations of Ostwald ripening with emphasis on the role of the initial size distribution with control at the atomic level
Due to high surface area, supported metal nanoparticles are thermodynamically prone to sintering. Th...
Molecular dynamics simulations of platinum (Pt) clusters on a graphite surface were performed to stu...
A Kinetic Monte Carlo simulation of the nucleation and growth of Pd clusters on a nanostructured alu...
The use of a laser ablation cluster source made it recently possible to study Ostwald ripening of su...
We present an atomistic understanding of the evolution of the size distribution with temperature and...
We present an atomistic understanding of the evolution of the size distribution with temperature and...
We present an atomistic understanding of the evolution of the size distribution with temperature and...
We have investigated experimentally and theoretically the role that ripening processes play in the e...
The presented theoretical treatment of interface-controlled Ostwald ripening of supported metal nano...
The morphology of cobalt, palladium, and platinum nanoclusters grown on a gold surface is analyzed f...
Size selection was demonstrated to suppress Ostwald ripening of supported catalytic nanoparticles. W...
To study the Ostwald ripening process of Au13 nanoparticles a two-scale model is constructed: analyt...
PtPd nanoparticles are among the most widely studied nanoscale systems, mainly because of their appl...
International audienceCollisional processes leading to the formation of nanoparticles in a laser-abl...
While it is well established that nanoparticle shape can depend on equilibrium thermodynamics or gro...
Due to high surface area, supported metal nanoparticles are thermodynamically prone to sintering. Th...
Molecular dynamics simulations of platinum (Pt) clusters on a graphite surface were performed to stu...
A Kinetic Monte Carlo simulation of the nucleation and growth of Pd clusters on a nanostructured alu...
The use of a laser ablation cluster source made it recently possible to study Ostwald ripening of su...
We present an atomistic understanding of the evolution of the size distribution with temperature and...
We present an atomistic understanding of the evolution of the size distribution with temperature and...
We present an atomistic understanding of the evolution of the size distribution with temperature and...
We have investigated experimentally and theoretically the role that ripening processes play in the e...
The presented theoretical treatment of interface-controlled Ostwald ripening of supported metal nano...
The morphology of cobalt, palladium, and platinum nanoclusters grown on a gold surface is analyzed f...
Size selection was demonstrated to suppress Ostwald ripening of supported catalytic nanoparticles. W...
To study the Ostwald ripening process of Au13 nanoparticles a two-scale model is constructed: analyt...
PtPd nanoparticles are among the most widely studied nanoscale systems, mainly because of their appl...
International audienceCollisional processes leading to the formation of nanoparticles in a laser-abl...
While it is well established that nanoparticle shape can depend on equilibrium thermodynamics or gro...
Due to high surface area, supported metal nanoparticles are thermodynamically prone to sintering. Th...
Molecular dynamics simulations of platinum (Pt) clusters on a graphite surface were performed to stu...
A Kinetic Monte Carlo simulation of the nucleation and growth of Pd clusters on a nanostructured alu...