Electronic and topological properties of two-dimensional germanene modified by functional group X (X = H, F, OH, CH3) at full coverage are studied with first-principles calculation. Without considering the effect of spin-orbit coupling (SOC), all functionalized configurations become semiconductors, removing the Dirac cone at K point in pristine germanene. We also find that their band gaps can be especially well tuned by an external strain. When the SOC is switched on, GeX (X = H, CH3) is a normal insulator and strain leads to a phase transition to a topological insulator (TI) phase. However, GeX (X = F, OH) becomes a TI with a large gap of 0.19 eV for X = F and 0.24 eV for X = OH, even without external strains. More interestingly, when all ...
Similar to carbon, germanium exists in various structures such as three-dimensional crystalline germ...
Graphene is foreseen to be the basis of future electronics owing to its ultra thin structure, extrem...
Structural and electronic properties of armchair germanene nanoribbons functionalized by hydrogen at...
Electronic and topological properties of two-dimensional germanene modified by functional group X (X...
Using first principle calculations, we propose functionalized germanene (GeX, X = H, F, Cl, Br, I, O...
Germanene, a two-dimensional (2D) Dirac semimetal beyond graphene, has been recently synthesized on ...
Recently, several research groups have reported the growth of germanene, a new member of the graphen...
We present a low energy Hamiltonian generalized to describe how the energy bands of germanene (Ge ¯ ...
Germanene is a novel 2D material with promising optoelectronic properties, tuning of which is to be ...
In this chapter a brief review of the current status of germanene, that is, the germanium analog of ...
This work investigates the optical and electronic properties of Germanene – the 2D nanosheet of germ...
In this work, the structural, electronic and optical properties of germanene and ZnSe substrate nano...
DFT calculations are performed to investigate the electronic and optical absorption properties of tw...
In this work, the structural and electronic properties of graphene/germanene heterobilayer is invest...
The experimental realization of two-dimensional materials such as graphene, silicene and germanene h...
Similar to carbon, germanium exists in various structures such as three-dimensional crystalline germ...
Graphene is foreseen to be the basis of future electronics owing to its ultra thin structure, extrem...
Structural and electronic properties of armchair germanene nanoribbons functionalized by hydrogen at...
Electronic and topological properties of two-dimensional germanene modified by functional group X (X...
Using first principle calculations, we propose functionalized germanene (GeX, X = H, F, Cl, Br, I, O...
Germanene, a two-dimensional (2D) Dirac semimetal beyond graphene, has been recently synthesized on ...
Recently, several research groups have reported the growth of germanene, a new member of the graphen...
We present a low energy Hamiltonian generalized to describe how the energy bands of germanene (Ge ¯ ...
Germanene is a novel 2D material with promising optoelectronic properties, tuning of which is to be ...
In this chapter a brief review of the current status of germanene, that is, the germanium analog of ...
This work investigates the optical and electronic properties of Germanene – the 2D nanosheet of germ...
In this work, the structural, electronic and optical properties of germanene and ZnSe substrate nano...
DFT calculations are performed to investigate the electronic and optical absorption properties of tw...
In this work, the structural and electronic properties of graphene/germanene heterobilayer is invest...
The experimental realization of two-dimensional materials such as graphene, silicene and germanene h...
Similar to carbon, germanium exists in various structures such as three-dimensional crystalline germ...
Graphene is foreseen to be the basis of future electronics owing to its ultra thin structure, extrem...
Structural and electronic properties of armchair germanene nanoribbons functionalized by hydrogen at...