Abstract Using density functional theory (DFT), we performed theoretical investigation on structural, energetic, electronic, and magnetic properties of pure armchair silicene nanoribbons with edges terminated with hydrogen atoms (ASiNRs:H), and the absorptions of silicon (Si) atom(s) on the top of ASiNRs:H. The calculated results show that Si atoms prefer to adsorb on the top site of ASiNRs:H and form the single- and/or di-adatom defects depending on the numbers. Si absorption defect(s) change electronic and magnetic properties of ASiNRs:H. Depending on the adsorption site the band gap of ASiNRs:H can be larger or smaller. The largest band gap of 1 Si atom adsorption is 0.64 eV at site 3, the adsorption of 2 Si atoms has the largest band ga...
Using first-principles methods, we systematically study the mechanism of defect formation and electr...
© 2015 Macmillan Publishers Limited. The interface stability of hybrid silicene/fluorosilicene nanor...
This paper investigates atomic structure, mechanical, electronic, and magnetic properties of silicon...
This study applies density functional theory (DFT) on examination of silicene, which is graphene-lik...
The interaction of silicene with Si, C, H, O, and Ti atoms along with H2, H2O, and O2 molecules are ...
Cataloged from PDF version of article.The interaction of silicene with Si, C, H, O, and Ti atoms alo...
Silicene, a two-dimensional (2D) silicon counterpart of graphene with attractive electronic properti...
This study employed density functional theory calculations to investigate the structural, electronic...
We study the impact of various point defects on the structural, electronic and ballistic transport p...
Two-dimensional materials have attracted much research attention given their intriguing properties. ...
Armchair silicene nanoribbons with width of 9–39 silicon atoms are investigated by using the self-co...
Silicene is envisaged as one of the two-dimensional (2D) materials for future nanoelectronic applica...
The popularity of graphene owing to its unique properties has triggered huge interest in other two-d...
The popularity of graphene owing to its unique properties has triggered huge interest in other two-d...
The popularity of graphene owing to its unique properties has triggered huge interest in other two-d...
Using first-principles methods, we systematically study the mechanism of defect formation and electr...
© 2015 Macmillan Publishers Limited. The interface stability of hybrid silicene/fluorosilicene nanor...
This paper investigates atomic structure, mechanical, electronic, and magnetic properties of silicon...
This study applies density functional theory (DFT) on examination of silicene, which is graphene-lik...
The interaction of silicene with Si, C, H, O, and Ti atoms along with H2, H2O, and O2 molecules are ...
Cataloged from PDF version of article.The interaction of silicene with Si, C, H, O, and Ti atoms alo...
Silicene, a two-dimensional (2D) silicon counterpart of graphene with attractive electronic properti...
This study employed density functional theory calculations to investigate the structural, electronic...
We study the impact of various point defects on the structural, electronic and ballistic transport p...
Two-dimensional materials have attracted much research attention given their intriguing properties. ...
Armchair silicene nanoribbons with width of 9–39 silicon atoms are investigated by using the self-co...
Silicene is envisaged as one of the two-dimensional (2D) materials for future nanoelectronic applica...
The popularity of graphene owing to its unique properties has triggered huge interest in other two-d...
The popularity of graphene owing to its unique properties has triggered huge interest in other two-d...
The popularity of graphene owing to its unique properties has triggered huge interest in other two-d...
Using first-principles methods, we systematically study the mechanism of defect formation and electr...
© 2015 Macmillan Publishers Limited. The interface stability of hybrid silicene/fluorosilicene nanor...
This paper investigates atomic structure, mechanical, electronic, and magnetic properties of silicon...