The size and form of metallic nanoparticles (NPs) significantly affects their adsorptive, chemical, and catalytic activity. One of the most interesting nanoscale size effects is the transition from icosahedral to octahedral forms with growth in the NP size. We compared the stability of icosahedral, decahedral and cuboctahedral NPs made from eight metals Ni, Cu, Rh, Pd, Ag, Ir, Pt, and Au using the local optimization of total energy, which was computed from the tight-binding second moment approximation and quantum Sutton–Chen potentials. The obtained results predicted that the icosahedral form would be most stable for Ni, and least stable for Au. For Rh, and especially for Ir, a strong dependency of the stability of the different forms on th...
In the pursuit of complete control over morphology in nanoparticle synthesis, knowledge of the therm...
International audienceScanning transmission electron microscopy experiments indicate that face-cente...
The structures of AgCu, AgNi, and AgCo nanoalloys with icosahedral geometry have been computationall...
Metal nanoparticles (NPs) are ubiquitous in many fields, from nanotechnology to heterogeneous cataly...
In this study, we identified stable configurations for three nanoparticle structure motifs (icosahed...
Although tremendous applications for metal nanoparticles have been found in modern technologies, the...
The rearrangement of transition metal nanoparticles from cuboctahedral to icosahedral structures is ...
Density functional plane-wave calculations have been carried out for series of Cu n ,Ag n and Au n ...
A thermodynamic model based on an empirical many-body potential energy function is used, to investig...
By means of a combination of atomistic and density-functional theory calculations it is shown that s...
By means of a combination of atomistic and density-functional theory calculations it is shown that s...
A thermodynamics-based approach to determining stability conditions for metallic nano-ensembles is p...
In the pursuit of complete control over morphology in nanoparticle synthesis, knowledge of the therm...
In the pursuit of complete control over morphology in nanoparticle synthesis, knowledge of the therm...
The structures of AgCu, AgNi, and AgCo nanoalloys with icosahedral geometry have been computationall...
In the pursuit of complete control over morphology in nanoparticle synthesis, knowledge of the therm...
International audienceScanning transmission electron microscopy experiments indicate that face-cente...
The structures of AgCu, AgNi, and AgCo nanoalloys with icosahedral geometry have been computationall...
Metal nanoparticles (NPs) are ubiquitous in many fields, from nanotechnology to heterogeneous cataly...
In this study, we identified stable configurations for three nanoparticle structure motifs (icosahed...
Although tremendous applications for metal nanoparticles have been found in modern technologies, the...
The rearrangement of transition metal nanoparticles from cuboctahedral to icosahedral structures is ...
Density functional plane-wave calculations have been carried out for series of Cu n ,Ag n and Au n ...
A thermodynamic model based on an empirical many-body potential energy function is used, to investig...
By means of a combination of atomistic and density-functional theory calculations it is shown that s...
By means of a combination of atomistic and density-functional theory calculations it is shown that s...
A thermodynamics-based approach to determining stability conditions for metallic nano-ensembles is p...
In the pursuit of complete control over morphology in nanoparticle synthesis, knowledge of the therm...
In the pursuit of complete control over morphology in nanoparticle synthesis, knowledge of the therm...
The structures of AgCu, AgNi, and AgCo nanoalloys with icosahedral geometry have been computationall...
In the pursuit of complete control over morphology in nanoparticle synthesis, knowledge of the therm...
International audienceScanning transmission electron microscopy experiments indicate that face-cente...
The structures of AgCu, AgNi, and AgCo nanoalloys with icosahedral geometry have been computationall...