Molecular dynamics simulations of a platinum nanocluster consisting 250 atoms were performed at different temperatures between 70 K and 298 K. The semi-empirical, many-body Sutton-Chen (SC) potential was used to model the interatomic interaction in the metallic system. Regions of core or bulk-like atoms and surface atoms can be defined from analyses of structures, atomic coordination, and the local density function of atoms as defined in the SC potential. The core atoms in the nanoparticle behave as bulk-like metal atoms with a predominant face centered cubic (fcc) packing. The interface between surface atoms and core atoms is marked by a peak in the local density function and corresponds to near surface atoms. The near surface atoms and su...
The ground state energies of Ag and Au in the face-centered cubic (FCC), body-centered cubic (BCC), ...
We have investigated the segregation of Pt atoms in the surfaces of Pt-Ni nanoparticles, using Modi...
We have investigated the segregation of Pt atoms in the surfaces of Pt-Ni nanoparticles, using Modif...
Molecular dynamics simulations are performed to investigate the atomic distribution and the structur...
We have developed interatomic potentials for Pt-Ni and Pt-Re alloys within the modified embedded at...
We have developed interatomic potentials for Pt-Ni and Pt-Re alloys within the modified embedded ato...
A nanoparticle contains from a few atoms for the smallest ones to several thousand for the largest o...
Cuboctahedron (CUB) and icosahedron (ICO) model structures are widely used in the study of transitio...
Understanding the size- and shape-dependent properties of platinum nanoparticles is critical for ena...
Core-shell nanoparticles have gathered much attention of the scientific community owing to their pot...
In the present study, molecular dynamics simulations have been utilized to provide fundamental under...
Molecular dynamics simulations of platinum (Pt) clusters on a graphite surface were performed to stu...
The atomic structures and solidification point of silver nanoparticles (SNPs) are studied in a serie...
Cubic monoatomic nanoframes of Ag, Au, and Pt were modeled in terms of their evolution with temperat...
In this study, we identified stable configurations for three nanoparticle structure motifs (icosahed...
The ground state energies of Ag and Au in the face-centered cubic (FCC), body-centered cubic (BCC), ...
We have investigated the segregation of Pt atoms in the surfaces of Pt-Ni nanoparticles, using Modi...
We have investigated the segregation of Pt atoms in the surfaces of Pt-Ni nanoparticles, using Modif...
Molecular dynamics simulations are performed to investigate the atomic distribution and the structur...
We have developed interatomic potentials for Pt-Ni and Pt-Re alloys within the modified embedded at...
We have developed interatomic potentials for Pt-Ni and Pt-Re alloys within the modified embedded ato...
A nanoparticle contains from a few atoms for the smallest ones to several thousand for the largest o...
Cuboctahedron (CUB) and icosahedron (ICO) model structures are widely used in the study of transitio...
Understanding the size- and shape-dependent properties of platinum nanoparticles is critical for ena...
Core-shell nanoparticles have gathered much attention of the scientific community owing to their pot...
In the present study, molecular dynamics simulations have been utilized to provide fundamental under...
Molecular dynamics simulations of platinum (Pt) clusters on a graphite surface were performed to stu...
The atomic structures and solidification point of silver nanoparticles (SNPs) are studied in a serie...
Cubic monoatomic nanoframes of Ag, Au, and Pt were modeled in terms of their evolution with temperat...
In this study, we identified stable configurations for three nanoparticle structure motifs (icosahed...
The ground state energies of Ag and Au in the face-centered cubic (FCC), body-centered cubic (BCC), ...
We have investigated the segregation of Pt atoms in the surfaces of Pt-Ni nanoparticles, using Modi...
We have investigated the segregation of Pt atoms in the surfaces of Pt-Ni nanoparticles, using Modif...