This paper presents novel advances in the deformation behaviour of polycrystalline and single crystal silicon using molecular dynamics (MD) simulation and validation of the same via nanoindentation experiments. In order to unravel the mechanism of deformation, four simulations were performed: indentation of a polycrystalline silicon substrate with a (i) Berkovich pyramidal and a (ii) spherical (arc) indenter, and (iii and iv) indentation of a single crystal silicon substrate with these two indenters. The simulation results reveal that high pressure phase transformation (HPPT) in silicon (Si-I to Si-II phase transformation) occurred in all cases; however, its extent and the manner in which it occurred differed significantly between polycryst...
Developing new techniques for the prediction of materials behaviors in nano-scales has been an attra...
Nano silicon is widely used as the essential element of complementary metal–oxide–semiconductor (CMO...
Silicon in its diamond-cubic phase is known to phase transform to a technologically interesting mixt...
This paper presents novel advances in the deformation behaviour of polycrystalline and single crysta...
This paper presents novel advances in the deformation behaviour of polycrystalline and single crysta...
This paper presents novel advances in the deformation behaviour of polycrystalline and single crysta...
This paper presents novel advances in the deformation behaviour of polycrystalline and single crysta...
AbstractThis work presents the molecular dynamics approach toward mechanical deformation and phase t...
Abstract This work presents the molecular dynamics approach toward mechanical deformation and phase ...
Abstract This work presents the molecular dynamics approach toward mechanical deformation and phase ...
A nanoindentation simulation using molecular dynamic (MD) method was carried out to investigate the ...
Nanoindentation into single-crystalline Si is modeled by molecular dynamics simulation using a modif...
Nanoindentation into single-crystalline Si is modeled by molecular dynamics simulation using a modif...
Abstract. This paper discusses the phase transformation of diamond cubic silicon under nano-indentat...
This paper explores the evolution mechanisms of metastable phases during the nanoindentation on mono...
Developing new techniques for the prediction of materials behaviors in nano-scales has been an attra...
Nano silicon is widely used as the essential element of complementary metal–oxide–semiconductor (CMO...
Silicon in its diamond-cubic phase is known to phase transform to a technologically interesting mixt...
This paper presents novel advances in the deformation behaviour of polycrystalline and single crysta...
This paper presents novel advances in the deformation behaviour of polycrystalline and single crysta...
This paper presents novel advances in the deformation behaviour of polycrystalline and single crysta...
This paper presents novel advances in the deformation behaviour of polycrystalline and single crysta...
AbstractThis work presents the molecular dynamics approach toward mechanical deformation and phase t...
Abstract This work presents the molecular dynamics approach toward mechanical deformation and phase ...
Abstract This work presents the molecular dynamics approach toward mechanical deformation and phase ...
A nanoindentation simulation using molecular dynamic (MD) method was carried out to investigate the ...
Nanoindentation into single-crystalline Si is modeled by molecular dynamics simulation using a modif...
Nanoindentation into single-crystalline Si is modeled by molecular dynamics simulation using a modif...
Abstract. This paper discusses the phase transformation of diamond cubic silicon under nano-indentat...
This paper explores the evolution mechanisms of metastable phases during the nanoindentation on mono...
Developing new techniques for the prediction of materials behaviors in nano-scales has been an attra...
Nano silicon is widely used as the essential element of complementary metal–oxide–semiconductor (CMO...
Silicon in its diamond-cubic phase is known to phase transform to a technologically interesting mixt...