For materials with high surface-to-volume ratio and high oxygen affinity, oxide layers will significantly change the material properties. However, oxidation effects have not been studied for metal nanofoams, which have many applications because of their light weight and high stiffness. We use molecular dynamics simulations to show that oxidized aluminum nanofoams possess significantly improved ductility without reduction in tensile strength. The Al–O interface leads to an increased defect nucleation rate at the oxide interface, preventing localized deformation. At the same time, the enthalpy of mixing between aluminium and oxygen decreases for increasing O concentrations, reaching a minimum at the stoichiometric ratio of Al2O3, resulting in...
This study employed the reactive force field molecular dynamics to capture atomic-level heat and mas...
This study employed the reactive force field molecular dynamics to capture atomic-level heat and mas...
The influence of oxidation on the mechanical properties of nanostructured metals is rarely explored ...
For materials with high surface-to-volume ratio and high oxygen affinity, oxide layers will signific...
We performed ReaxFF-molecular dynamics (MD) simulations of the oxidation of aluminum nanoparticles (...
The oxidation of aluminum nanoparticles is studied with classical molecular dynamics and the Streitz...
Abstract Aluminium oxide (AlOx) tunnel junctions are important components in a range of nanoelectri...
We investigate the oxidation of aluminum low-index surfaces [(100), (110), and (111)] at low tempera...
Oxidation of an aluminum nanocluster (252,158 atoms) of radius 100{angstrom} placed in gaseous oxyge...
The chemical and topological aspects of short- and medium-range atomic ordering on oxidized Al(100) ...
The size-dependent phase stability of gamma-Al2O3 was studied by large-scale molecular dynamics simu...
The way how oxides form is critical to surface mechanical properties and also crack initiation and p...
Alumina (Al2O3) formed by selective oxidization provides an effective way to protect aluminide alloy...
The oxidation mechanisms of core-shell aluminum nanoparticles (ANPs) in high-temperature steam and o...
The scouting of alternative plasmonic materials able to enhance and extend the optical properties of...
This study employed the reactive force field molecular dynamics to capture atomic-level heat and mas...
This study employed the reactive force field molecular dynamics to capture atomic-level heat and mas...
The influence of oxidation on the mechanical properties of nanostructured metals is rarely explored ...
For materials with high surface-to-volume ratio and high oxygen affinity, oxide layers will signific...
We performed ReaxFF-molecular dynamics (MD) simulations of the oxidation of aluminum nanoparticles (...
The oxidation of aluminum nanoparticles is studied with classical molecular dynamics and the Streitz...
Abstract Aluminium oxide (AlOx) tunnel junctions are important components in a range of nanoelectri...
We investigate the oxidation of aluminum low-index surfaces [(100), (110), and (111)] at low tempera...
Oxidation of an aluminum nanocluster (252,158 atoms) of radius 100{angstrom} placed in gaseous oxyge...
The chemical and topological aspects of short- and medium-range atomic ordering on oxidized Al(100) ...
The size-dependent phase stability of gamma-Al2O3 was studied by large-scale molecular dynamics simu...
The way how oxides form is critical to surface mechanical properties and also crack initiation and p...
Alumina (Al2O3) formed by selective oxidization provides an effective way to protect aluminide alloy...
The oxidation mechanisms of core-shell aluminum nanoparticles (ANPs) in high-temperature steam and o...
The scouting of alternative plasmonic materials able to enhance and extend the optical properties of...
This study employed the reactive force field molecular dynamics to capture atomic-level heat and mas...
This study employed the reactive force field molecular dynamics to capture atomic-level heat and mas...
The influence of oxidation on the mechanical properties of nanostructured metals is rarely explored ...