Artículo de publicación ISIThe transition from elastic to plastic behaviour in single crystal copper nanowires under uniaxial tensile stress at different concentrations of silver (0.0–0.5 at.% Ag) and at different temperatures (0.1, 100, and 300 K) using the molecular dynamics method is investigated. The tensile stress is applied along h100i crystallographic orientation and the silver atoms are placed randomly on the surface of the nanowire, as substitutional point defect. The simulations indicate that silver atoms lower slightly the unstable stacking fault energy, making them act as sources of partial dislocation nucleation, due to the local strain field they produce in the lattice structure. The defects generated in the material als...
Nanoscale materials have become an active area of research due to the enhanced mechanical properties...
Based on the molecular dynamics simulation, plastic deformation mechanisms associated with the zigza...
The mechanical properties and breaking behaviors of the [100]-oriented single-crystal gold nanowires...
Artículo de publicación ISIThe transition from elastic to plastic behaviour in single crystal copper...
The transition from elastic to plastic behaviour in single crystal copper nanowires under uniaxial t...
Based on the embedded atom method (EAM), a molecular dynamics (MD) simulation is performed to study ...
The strength of true metallic nanowires and nanopillars (diameters below 100 nm) is known to be high...
Recently, Cu–Au core–shell nanowires have been extensively used as conductors, nanocatalysts, and ae...
Leveraging defects is a cornerstone of materials science, and has become increasingly important from...
Based on the embedded atom method (EAM) and molecular dynamics (MD) method, in this paper, the tensi...
The mechanical properties and plastic deformation mechanisms of metal nanowires have been studied in...
Based on the embedded atom method (EAM) and molecular dynamics (MD) method, the mono-crystalline cop...
Based on the molecular dynamics (MD) method, the single-crystalline copper nanowire with different s...
Abstract. Molecular dynamics (MD) simulations have been carried out to investigate the defect’s effe...
Molecular dynamics (MD) simulations have been carried out to investigate the defect's effect on the ...
Nanoscale materials have become an active area of research due to the enhanced mechanical properties...
Based on the molecular dynamics simulation, plastic deformation mechanisms associated with the zigza...
The mechanical properties and breaking behaviors of the [100]-oriented single-crystal gold nanowires...
Artículo de publicación ISIThe transition from elastic to plastic behaviour in single crystal copper...
The transition from elastic to plastic behaviour in single crystal copper nanowires under uniaxial t...
Based on the embedded atom method (EAM), a molecular dynamics (MD) simulation is performed to study ...
The strength of true metallic nanowires and nanopillars (diameters below 100 nm) is known to be high...
Recently, Cu–Au core–shell nanowires have been extensively used as conductors, nanocatalysts, and ae...
Leveraging defects is a cornerstone of materials science, and has become increasingly important from...
Based on the embedded atom method (EAM) and molecular dynamics (MD) method, in this paper, the tensi...
The mechanical properties and plastic deformation mechanisms of metal nanowires have been studied in...
Based on the embedded atom method (EAM) and molecular dynamics (MD) method, the mono-crystalline cop...
Based on the molecular dynamics (MD) method, the single-crystalline copper nanowire with different s...
Abstract. Molecular dynamics (MD) simulations have been carried out to investigate the defect’s effe...
Molecular dynamics (MD) simulations have been carried out to investigate the defect's effect on the ...
Nanoscale materials have become an active area of research due to the enhanced mechanical properties...
Based on the molecular dynamics simulation, plastic deformation mechanisms associated with the zigza...
The mechanical properties and breaking behaviors of the [100]-oriented single-crystal gold nanowires...