Classical molecular dynamics (MD) and x-ray diffraction (XRD) have been used to establish the origin of the paracrystalline structure of silver nanoparticles at the atomic scale. Models based on the face-centred cubic structure have been computer generated and their atomic arrangements have been optimized by the MD with the embedded-atom model (EAM) potential and its modified version (MEAM). The simulation results are compared with the experimental XRD data in reciprocal and real spaces, i.e. the structure factor and the pair distribution function. The applied approach returns the structural models, defined by the Cartesian coordinates of the constituent atoms. It has been found that most of the structural features of Ag nanoparticles are b...
Motivated by our experimental research related to silver nanoparticles with various morphologies, we...
We use molecular dynamics simulation to study iron Nanoparticles (NPs) consisting of 4000, 5000, and...
The ground state energies of Ag and Au in the face-centered cubic (FCC), body-centered cub...
Atomistic simulations based on Molecular Dynamics (MD) were used to model the lattice distortions in...
International audienceScanning transmission electron microscopy experiments indicate that face-cente...
The out-of-equilibrium structural relaxation of Ag-Ni nanoparticles containing about 1000–3000 atoms...
LOBATO, I. [et al.]. Atomic and electronic structure transformations of silver nanoparticles under r...
The atomic structures and solidification point of silver nanoparticles (SNPs) are studied in a serie...
The structural evolution and dynamics of silver nanodrops Ag_2869 (4.4 nm in diameter) under rapid c...
The quantitative analysis of structural defects in Ag nanoparticles was addressed in this work. We p...
The ground state energies of Ag and Au in the face-centered cubic (FCC), body-centered cubic (BCC), ...
A comparative molecular dynamics simulation of the gas-phase synthesis of Ag nanoparticles is carrie...
In crystallization, nanoparticle aggregation often leads to the formation of orderly structures, eve...
A recent molecular dynamics simulation method for growth of fully dense nanocrystalline materials cr...
The nucleation and growth of silver nanoparticles are modeled and simulated based on first-principle...
Motivated by our experimental research related to silver nanoparticles with various morphologies, we...
We use molecular dynamics simulation to study iron Nanoparticles (NPs) consisting of 4000, 5000, and...
The ground state energies of Ag and Au in the face-centered cubic (FCC), body-centered cub...
Atomistic simulations based on Molecular Dynamics (MD) were used to model the lattice distortions in...
International audienceScanning transmission electron microscopy experiments indicate that face-cente...
The out-of-equilibrium structural relaxation of Ag-Ni nanoparticles containing about 1000–3000 atoms...
LOBATO, I. [et al.]. Atomic and electronic structure transformations of silver nanoparticles under r...
The atomic structures and solidification point of silver nanoparticles (SNPs) are studied in a serie...
The structural evolution and dynamics of silver nanodrops Ag_2869 (4.4 nm in diameter) under rapid c...
The quantitative analysis of structural defects in Ag nanoparticles was addressed in this work. We p...
The ground state energies of Ag and Au in the face-centered cubic (FCC), body-centered cubic (BCC), ...
A comparative molecular dynamics simulation of the gas-phase synthesis of Ag nanoparticles is carrie...
In crystallization, nanoparticle aggregation often leads to the formation of orderly structures, eve...
A recent molecular dynamics simulation method for growth of fully dense nanocrystalline materials cr...
The nucleation and growth of silver nanoparticles are modeled and simulated based on first-principle...
Motivated by our experimental research related to silver nanoparticles with various morphologies, we...
We use molecular dynamics simulation to study iron Nanoparticles (NPs) consisting of 4000, 5000, and...
The ground state energies of Ag and Au in the face-centered cubic (FCC), body-centered cub...