Using first-principles density functional theory calculations, we showed that electronic and magnetic properties of bare and Ti adatom adsorbed single-layer silicene and germanene, which are charged or subjected to a perpendicular electric field, can be modified to attain new functionalities. In particular, when subjected to a perpendicular electric field, buckled atoms have the symmetry between their planes broken, opening a gap at the Dirac points. The occupation of 3d orbitals of the adsorbed Ti atom changes with charging or applied electric field, inducing significant changes in magnetic moment. We predict neutral silicene uniformly covered by Ti atoms to become a half-metal at a specific value of coverage and hence allow the transport ...
Two-dimensional materials have attracted much research attention given their intriguing properties. ...
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 Density Functional Theory calculations, we showed that electronic and magneti...
Titanium atoms are adsorbed to graphene with a significant binding energy and render diverse functio...
We report calculations of the electronic structure of silicene and the stability of its weakly buckl...
The interaction of silicene with Si, C, H, O, and Ti atoms along with H2, H2O, and O2 molecules are ...
Layered materials with buckled structure offer a promising route to explore distinct phases of quant...
This study applies density functional theory (DFT) on examination of silicene, which is graphene-lik...
Cataloged from PDF version of article.The interaction of silicene with Si, C, H, O, and Ti atoms alo...
Layered materials with buckled structure offer a promising route to explore distinct phases of quant...
By using ab initio calculations, we predict that a vertical electric field is able to open a band ga...
Layered materials with buckled structure offer a promising route to explore distinct phases of quant...
Layered materials with buckled structure offer a promising route to explore distinct phases of quant...
Layered materials with buckled structure offer a promising route to explore distinct phases of quant...
Two-dimensional materials have attracted much research attention given their intriguing properties. ...
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 Density Functional Theory calculations, we showed that electronic and magneti...
Titanium atoms are adsorbed to graphene with a significant binding energy and render diverse functio...
We report calculations of the electronic structure of silicene and the stability of its weakly buckl...
The interaction of silicene with Si, C, H, O, and Ti atoms along with H2, H2O, and O2 molecules are ...
Layered materials with buckled structure offer a promising route to explore distinct phases of quant...
This study applies density functional theory (DFT) on examination of silicene, which is graphene-lik...
Cataloged from PDF version of article.The interaction of silicene with Si, C, H, O, and Ti atoms alo...
Layered materials with buckled structure offer a promising route to explore distinct phases of quant...
By using ab initio calculations, we predict that a vertical electric field is able to open a band ga...
Layered materials with buckled structure offer a promising route to explore distinct phases of quant...
Layered materials with buckled structure offer a promising route to explore distinct phases of quant...
Layered materials with buckled structure offer a promising route to explore distinct phases of quant...
Two-dimensional materials have attracted much research attention given their intriguing properties. ...
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...