In this work, we present results from atomistic simulations of gold nanowires under axial compression, with a focus on examining the effects of both axial and surface orientation effects on the buckling behavior. This was accomplished by using molecular statics simulations while considering three different crystallographic systems: /{100}, /{110} and /{110}{100}, with aspect ratios spanning from 20 to 50 and cross-sectional dimensions ranging from 2.45 to 5.91 nm. The simulations indicate that there is a deviation from the inverse square length dependence of critical forces predicted from traditional linear elastic Bernoulli–Euler and Timoshenko beam theories, where the nature of the deviation from the perfect inverse square length behavior...
In this work, resonant and elastic properties of single crystal gold nanowires have been studied thr...
Several studies of the surface effect on bending properties of a nanowire (NW) have been conducted. ...
The strength of true metallic nanowires and nanopillars (diameters below 100 nm) is known to be high...
The purpose of this work is to present results from an ongoing study on how the presence of surfaces...
Canada Research Chairs Program (CRC); National Science and Engineering Research Council (NSERC); Nat...
Mechanical response of metal nanowires has recently attracted a lot of interest due to their ultra-h...
The approach of molecular dynamics simulation is one of the most promising methods for investigating...
Canada Research Chairs Program (CRC); National Science and Engineering Research Council (NSERC); Nat...
Nanowires constitute one of the fundamental building blocks in assembled nanodevices. Due to the hig...
Nanowires are an exciting class of novel materials that have potential applications in areas includi...
AbstractThe evolution and breaking of [110]-gold nanowires elongated along low symmetry tensile axes...
The present work investigates contributions from surfaces and core nonlinearity to the size-dependen...
Nanoscale materials have become an active area of research due to the enhanced mechanical properties...
In this paper, we have used molecular statics calculations with the quantum corrected Sutten-Chen ty...
International audienceIn this Letter, we combine atomistic simulations and a continuum model, based ...
In this work, resonant and elastic properties of single crystal gold nanowires have been studied thr...
Several studies of the surface effect on bending properties of a nanowire (NW) have been conducted. ...
The strength of true metallic nanowires and nanopillars (diameters below 100 nm) is known to be high...
The purpose of this work is to present results from an ongoing study on how the presence of surfaces...
Canada Research Chairs Program (CRC); National Science and Engineering Research Council (NSERC); Nat...
Mechanical response of metal nanowires has recently attracted a lot of interest due to their ultra-h...
The approach of molecular dynamics simulation is one of the most promising methods for investigating...
Canada Research Chairs Program (CRC); National Science and Engineering Research Council (NSERC); Nat...
Nanowires constitute one of the fundamental building blocks in assembled nanodevices. Due to the hig...
Nanowires are an exciting class of novel materials that have potential applications in areas includi...
AbstractThe evolution and breaking of [110]-gold nanowires elongated along low symmetry tensile axes...
The present work investigates contributions from surfaces and core nonlinearity to the size-dependen...
Nanoscale materials have become an active area of research due to the enhanced mechanical properties...
In this paper, we have used molecular statics calculations with the quantum corrected Sutten-Chen ty...
International audienceIn this Letter, we combine atomistic simulations and a continuum model, based ...
In this work, resonant and elastic properties of single crystal gold nanowires have been studied thr...
Several studies of the surface effect on bending properties of a nanowire (NW) have been conducted. ...
The strength of true metallic nanowires and nanopillars (diameters below 100 nm) is known to be high...