The influence of oxidation on the mechanical properties of nanostructured metals is rarely explored and remains poorly understood. To address this knowledge gap, in this work, we systematically investigate the mechanical properties and changes in the metallic iron (Fe) nanowires (NWs) under various atmospheric conditions of ambient dry O-2 and in a vacuum. More specifically, we focus on the effect of oxide shell layer thickness over Fe NW surfaces at room temperature. We use molecular dynamics (MD) simulations with the variable charge ReaxFF force field potential model that dynamically handles charge variation among atoms as well as breaking and forming of the chemical bonds associated with the oxidation reaction. The ReaxFF potential model...
Modern technological pressure for property-directing structural design of Fe/oxide core–shell nanopa...
Hematite (α-Fe₂O₃) nanowhiskers (NWs) with (001) basal faces synthesized via thermal oxidation of ir...
Copper nanowires have received extensive attention for their potential applications in optics, elect...
The influence of oxidation on the mechanical properties of nanostructured metals is rarely explored ...
To avoid unexpected environmental mechanical failure, there is a strong need to fully understand the...
Highly reactive metallic nickel (Ni) is readily oxidized by oxygen (O2) molecules even at low temper...
Nanowires are an exciting class of novel materials that have potential applications in areas includi...
Oxidation of iron surfaces and oxide growth mechanisms have been studied using reactive molecular dy...
The growth of one-dimensional oxide nanostructures by direct oxidation of metals has received extens...
This paper presents a detailed analysis of atomic structure and force variations in metal nanowires ...
We used ReaxFF reactive molecular dynamics simulations to systematically investigate the effects of ...
Molecular dynamics simulations are employed to study the effect of native oxide on the size-dependen...
The urgent requirement of minimising the worldwide cost of corrosion, accompanied by the increasingl...
By suitably pressurizing iron substrates under different conditions, the resulting alpha-Fe2O3 nanos...
Silicon nanowires have attracted considerable interest due to their wide-ranging applications in nan...
Modern technological pressure for property-directing structural design of Fe/oxide core–shell nanopa...
Hematite (α-Fe₂O₃) nanowhiskers (NWs) with (001) basal faces synthesized via thermal oxidation of ir...
Copper nanowires have received extensive attention for their potential applications in optics, elect...
The influence of oxidation on the mechanical properties of nanostructured metals is rarely explored ...
To avoid unexpected environmental mechanical failure, there is a strong need to fully understand the...
Highly reactive metallic nickel (Ni) is readily oxidized by oxygen (O2) molecules even at low temper...
Nanowires are an exciting class of novel materials that have potential applications in areas includi...
Oxidation of iron surfaces and oxide growth mechanisms have been studied using reactive molecular dy...
The growth of one-dimensional oxide nanostructures by direct oxidation of metals has received extens...
This paper presents a detailed analysis of atomic structure and force variations in metal nanowires ...
We used ReaxFF reactive molecular dynamics simulations to systematically investigate the effects of ...
Molecular dynamics simulations are employed to study the effect of native oxide on the size-dependen...
The urgent requirement of minimising the worldwide cost of corrosion, accompanied by the increasingl...
By suitably pressurizing iron substrates under different conditions, the resulting alpha-Fe2O3 nanos...
Silicon nanowires have attracted considerable interest due to their wide-ranging applications in nan...
Modern technological pressure for property-directing structural design of Fe/oxide core–shell nanopa...
Hematite (α-Fe₂O₃) nanowhiskers (NWs) with (001) basal faces synthesized via thermal oxidation of ir...
Copper nanowires have received extensive attention for their potential applications in optics, elect...