International audienceNanoalloys are often grown or synthesized in non-equilibrium configurations whose further evolution towards equilibrium can take place through complex pathways. In this work, we consider bimetallic systems with tendency towards intermixing, namely AgAu, PtPd and AuCu. We analyze their evolution starting from non-equilibrium initial configurations, such as phase-separated core@shell ones, by means of molecular dynamics (MD) simulations. These systems present some differences, since AuCu bulk alloys make ordered phases at low temperature whereas AgAu and PtPd remain in solid solution. Moreover, Cu, Au and Ag have similar cohesive energies whereas Pt is much more cohesive than Pd. We consider both truncated octahedral and...
The gas-phase growth of AuAg and PtPd clusters up to sizes ~3 nm is simulated by Molecular Dynamics....
Molecular dynamics simulations are performed to investigate the changes of packing structures, and t...
International audienceThe equilibrium shape of nanoparticles is investigated to elucidate the variou...
International audienceNanoalloys are often grown or synthesized in non-equilibrium configurations wh...
The evolution towards equilibrium of AuCo, AgNi and AgCu nanoparticles is studied by molecular dynam...
High calcination temperatures are often required in nanoparticle synthesis and an understanding of h...
High calcination temperatures are often required in nanoparticle synthesis and an understanding of h...
Bimetallic nanoparticles are highly relevant for applications in, e.g., catalysis, sensing, and ener...
High calcination temperatures are often required in nanoparticle synthesis and an understanding of h...
Bimetallic nanoparticles are highly relevant for applications in, e.g., catalysis, sensing, and ener...
Bimetallic nanoparticles are highly relevant for applications in, e.g., catalysis, sensing, and ener...
High calcination temperatures are often required in nanoparticle synthesis and an understanding of h...
Structural optimization of ternary PdmPt(13-m)Ag42 nanoalloys was performed using the basin-hopping ...
In this study, the classical molecular dynamics simulations in canonical ensemble conditions (NVT) w...
WOS: 000446918900008Structural optimization of ternary PdmPt(13-m)Ag42 nanoalloys was performed usin...
The gas-phase growth of AuAg and PtPd clusters up to sizes ~3 nm is simulated by Molecular Dynamics....
Molecular dynamics simulations are performed to investigate the changes of packing structures, and t...
International audienceThe equilibrium shape of nanoparticles is investigated to elucidate the variou...
International audienceNanoalloys are often grown or synthesized in non-equilibrium configurations wh...
The evolution towards equilibrium of AuCo, AgNi and AgCu nanoparticles is studied by molecular dynam...
High calcination temperatures are often required in nanoparticle synthesis and an understanding of h...
High calcination temperatures are often required in nanoparticle synthesis and an understanding of h...
Bimetallic nanoparticles are highly relevant for applications in, e.g., catalysis, sensing, and ener...
High calcination temperatures are often required in nanoparticle synthesis and an understanding of h...
Bimetallic nanoparticles are highly relevant for applications in, e.g., catalysis, sensing, and ener...
Bimetallic nanoparticles are highly relevant for applications in, e.g., catalysis, sensing, and ener...
High calcination temperatures are often required in nanoparticle synthesis and an understanding of h...
Structural optimization of ternary PdmPt(13-m)Ag42 nanoalloys was performed using the basin-hopping ...
In this study, the classical molecular dynamics simulations in canonical ensemble conditions (NVT) w...
WOS: 000446918900008Structural optimization of ternary PdmPt(13-m)Ag42 nanoalloys was performed usin...
The gas-phase growth of AuAg and PtPd clusters up to sizes ~3 nm is simulated by Molecular Dynamics....
Molecular dynamics simulations are performed to investigate the changes of packing structures, and t...
International audienceThe equilibrium shape of nanoparticles is investigated to elucidate the variou...