Evolution of the chemical and topological inhomogeneities within the Al91Tb9 amorphous system from liquid to glass was investigated using Monte Carlo (MC) simulations. The interatomic potential for Al-Tb system was developed and three-dimensional atomic configurations of liquid and amorphous structures were modeled. The simulations coupled with Voronoi Tessellation and Warren-Cowley chemical short-range order analysis revealed a high degree of chemical inhomogeneity at nanoscale composed of pure Al clusters which were found to be increasing in number and size with decreasing temperature in the supercooled liquid region. These chemically isolated prenucleation clusters are thought to be the origin of extreme number
The Cluster Expansion formalism based on Density Functional Theory (DFT) simulation data has been ap...
Despite intense interest, identifying the structural origin of glass forming ability in metallic all...
We report first-principles computer simulations of the melting-like transition in Al<sub><i>n</i></s...
How the chemical and topological short- to medium-range order develops in Al-Tb glass and its ultima...
Molecular dynamics simulations using an interatomic potential developed by artificial neural network...
In this study, we used molecular dynamics (MD) simulations to investigate the atomic ordering in the...
Al materials are used in the wide range of application, such as sporting goods, engine components, a...
In this study we examine the structural properties of single-component metallic glasses of aluminum....
The local structure in rapidly quenched Al(100-x)Smx (x = 8, 10, 11, and 12) and liquid Al89Sm11 has...
Partial devitrification of the Al-RE marginal metallic glasses results in anomalous nucleation rate ...
The structure and transport properties of SiO2-Al2O3 melts containing 13 mol% and 47 mol% Al2O3 are ...
We report first-principles computer simulations of the melting-like transition in Al<sub><i>n</i></s...
The marginal glass-forming alloys have attracted much attention due to unique products of devitrific...
The solidification of pure aluminum has been studied by a large-scale molecular dynamic simulation. ...
The Cluster Expansion formalism based on Density Functional Theory (DFT) simulation data has been ap...
The Cluster Expansion formalism based on Density Functional Theory (DFT) simulation data has been ap...
Despite intense interest, identifying the structural origin of glass forming ability in metallic all...
We report first-principles computer simulations of the melting-like transition in Al<sub><i>n</i></s...
How the chemical and topological short- to medium-range order develops in Al-Tb glass and its ultima...
Molecular dynamics simulations using an interatomic potential developed by artificial neural network...
In this study, we used molecular dynamics (MD) simulations to investigate the atomic ordering in the...
Al materials are used in the wide range of application, such as sporting goods, engine components, a...
In this study we examine the structural properties of single-component metallic glasses of aluminum....
The local structure in rapidly quenched Al(100-x)Smx (x = 8, 10, 11, and 12) and liquid Al89Sm11 has...
Partial devitrification of the Al-RE marginal metallic glasses results in anomalous nucleation rate ...
The structure and transport properties of SiO2-Al2O3 melts containing 13 mol% and 47 mol% Al2O3 are ...
We report first-principles computer simulations of the melting-like transition in Al<sub><i>n</i></s...
The marginal glass-forming alloys have attracted much attention due to unique products of devitrific...
The solidification of pure aluminum has been studied by a large-scale molecular dynamic simulation. ...
The Cluster Expansion formalism based on Density Functional Theory (DFT) simulation data has been ap...
The Cluster Expansion formalism based on Density Functional Theory (DFT) simulation data has been ap...
Despite intense interest, identifying the structural origin of glass forming ability in metallic all...
We report first-principles computer simulations of the melting-like transition in Al<sub><i>n</i></s...