We consider the surface melting of metal nanowires by solving a phenomenological two-parabola Landau model and by conducting molecular dynamics simulations of nickel and aluminum nanowires. The model suggests that surface melting will precede bulk melting when the melt completely wets the surface and the wire is sufficiently thick, as is the case for planar surfaces and sufficiently large nanoparticles. Surface melting does not occur if the melt partially wets or does not wet the surface. We test this model, which assumes that the surface energies of the wire are isotropic, using molecular dynamics simulations. For nickel, we observe the onset of anisotropic surface melting associated with each of the two surface facets present, but this gi...
Molecular dynamics simulations are performed to determine the melting points of aluminum nanoparticl...
This research focuses on the characterization of the structure and mechanical behavior of metal nano...
We introduce a new and general criterion for melting as an alternative to the commonly used Lindeman...
We present an extensive but concise review of our present understanding, largely based on theory and...
The melting process of nickel nanowires are simulated by using molecular dynamics with the quantum S...
We have studied the structures and stabilities of copper nano-particles and the melting properties o...
We investigate the size effect on melting of metal nanoclusters by molecular dynamics simulation and...
Molecular dynamics simulation have shown that after initial surface melting, nanowires can melt via ...
We have investigated the melting behavior of thin lead wires using molecular dynamics. We find thati...
We have analyzed the expressed manifestation of the anisotropy of surface energy density in the dyna...
The strength of true metallic nanowires and nanopillars (diameters below 100 nm) is known to be high...
In order to illustrate how atomistic modeling is being used to determine the structure, physical, an...
A semi-empirical thermodynamic model for size dependency of melting point of nano particles and wire...
Abstract The mechanisms of plasticity in metal naowires with diameters below 100 nm are reviewed. At...
Nanoscale materials have become an active area of research due to the enhanced mechanical properties...
Molecular dynamics simulations are performed to determine the melting points of aluminum nanoparticl...
This research focuses on the characterization of the structure and mechanical behavior of metal nano...
We introduce a new and general criterion for melting as an alternative to the commonly used Lindeman...
We present an extensive but concise review of our present understanding, largely based on theory and...
The melting process of nickel nanowires are simulated by using molecular dynamics with the quantum S...
We have studied the structures and stabilities of copper nano-particles and the melting properties o...
We investigate the size effect on melting of metal nanoclusters by molecular dynamics simulation and...
Molecular dynamics simulation have shown that after initial surface melting, nanowires can melt via ...
We have investigated the melting behavior of thin lead wires using molecular dynamics. We find thati...
We have analyzed the expressed manifestation of the anisotropy of surface energy density in the dyna...
The strength of true metallic nanowires and nanopillars (diameters below 100 nm) is known to be high...
In order to illustrate how atomistic modeling is being used to determine the structure, physical, an...
A semi-empirical thermodynamic model for size dependency of melting point of nano particles and wire...
Abstract The mechanisms of plasticity in metal naowires with diameters below 100 nm are reviewed. At...
Nanoscale materials have become an active area of research due to the enhanced mechanical properties...
Molecular dynamics simulations are performed to determine the melting points of aluminum nanoparticl...
This research focuses on the characterization of the structure and mechanical behavior of metal nano...
We introduce a new and general criterion for melting as an alternative to the commonly used Lindeman...