We present a molecular dynamics study of grain boundary (GB) resistance to dislocation-mediated slip transfer and phonon-mediated heat transfer in nanocrystalline silicon bicrystal. Three most stable (110) tilt GBs in silicon are investigated. Under mechanical loading, the nucleation and growth of hexagonal-shaped shuffle dislocation loops are reproduced. The resistances of different GBs to slip transfer are quantified through their constitutive responses. Results show that the Σ3 coherent twin boundary (CTB) in silicon exhibits significantly higher resistance to dislocation motion than the Σ9 GB in glide symmetry and the Σ19 GB in mirror symmetry. The distinct GB strengths are explained by the atomistic details of the dislocation-GB intera...
The competition between free surfaces and internal grain boundaries as preferential sites for disloc...
The deformation mechanisms occurring in coarse-grained polycrystalline materials are now understood ...
This paper presents novel advances in the deformation behaviour of polycrystalline and single crysta...
The mechanical properties of polycrystalline materials are governed by the underlying microstructure...
Grain boundary (GB), a special solid-solid interface in materials, exists in all polycrystalline mat...
Using reverse non-equilibrium molecular dynamics method, we study the thermal properties of grain bo...
Grain boundaries (GBs) can play a role as the favored locations to annihilate point defects, such as...
We use a combination of vibrational-mode analysis and molecular-dynamics simulations to study the ef...
Molecular-dynamics simulations were used to synthesize nanocrystalline silicon with a grain size of ...
We use a combination of vibrational-mode analysis and molecular-dynamics simulations to study the ef...
Using molecular dynamics simulations, the grain boundaries in thin polycrystalline silicon films (co...
Molecular dynamics simulations were carried out for nonequilibrium phonon heat transport across the ...
The nucleation and propagation of dislocations and its consequence on the defect structure in silico...
Nonequilibrium molecular dynamics (NEMD) simulations are performed to calculate thermal boundary res...
A nanoindentation simulation using molecular dynamic (MD) method was carried out to investigate the ...
The competition between free surfaces and internal grain boundaries as preferential sites for disloc...
The deformation mechanisms occurring in coarse-grained polycrystalline materials are now understood ...
This paper presents novel advances in the deformation behaviour of polycrystalline and single crysta...
The mechanical properties of polycrystalline materials are governed by the underlying microstructure...
Grain boundary (GB), a special solid-solid interface in materials, exists in all polycrystalline mat...
Using reverse non-equilibrium molecular dynamics method, we study the thermal properties of grain bo...
Grain boundaries (GBs) can play a role as the favored locations to annihilate point defects, such as...
We use a combination of vibrational-mode analysis and molecular-dynamics simulations to study the ef...
Molecular-dynamics simulations were used to synthesize nanocrystalline silicon with a grain size of ...
We use a combination of vibrational-mode analysis and molecular-dynamics simulations to study the ef...
Using molecular dynamics simulations, the grain boundaries in thin polycrystalline silicon films (co...
Molecular dynamics simulations were carried out for nonequilibrium phonon heat transport across the ...
The nucleation and propagation of dislocations and its consequence on the defect structure in silico...
Nonequilibrium molecular dynamics (NEMD) simulations are performed to calculate thermal boundary res...
A nanoindentation simulation using molecular dynamic (MD) method was carried out to investigate the ...
The competition between free surfaces and internal grain boundaries as preferential sites for disloc...
The deformation mechanisms occurring in coarse-grained polycrystalline materials are now understood ...
This paper presents novel advances in the deformation behaviour of polycrystalline and single crysta...