Germanene is a novel 2D material with promising optoelectronic properties, tuning of which is to be explored. This work demonstrates that doping and increasing the sheet size can alter optical and electronic properties of germanene via perturbation of the band structure. This feature has also been observed in other nanostructures, notably, silicon nanostructures, and may be attributed to quantum confinement effects. Our main findings on H-terminated germanene are, (i) band gap can be reduced by 30%, (ii) exciton binding energy can be reduced by 60%, and (iii) absorption spectra can be tuned from UV to visible range. We employ time-dependent density functional theory to investigate the role of dopants, boron (B), phosphorus (P), carbon (C), ...
Opening a sizable band gap in the zero-gap germanene without heavy loss of carrier mobility is a key...
Societal continued demand for faster and more compactness to life’s everyday solutions have shifted ...
In recent years,considerable efforts have been done to study silicon, germanium, and silicon/germani...
This work investigates the optical and electronic properties of Germanene – the 2D nanosheet of germ...
We report on the TDDFT calculations of the effect of the size on the optoelectronic properties of ge...
Silicene, a two-dimensional (2D) silicon nanosheet, has gained immense interest due to potential app...
Silicene, a two-dimensional (2D) silicon nanosheet, has gained immense interest due to potential app...
Using first principle calculations, we propose functionalized germanene (GeX, X = H, F, Cl, Br, I, O...
In this work, the structural, electronic and optical properties of germanene and ZnSe substrate nano...
Electronic and topological properties of two-dimensional germanene modified by functional group X (X...
Bulk germanium as a group-IV photonic material has been widely studied due to its relatively large r...
Germanene, a two-dimensional (2D) Dirac semimetal beyond graphene, has been recently synthesized on ...
DFT calculations are performed to investigate the electronic and optical absorption properties of tw...
The heavier analogues of graphene, namely silicene and germanene, are known to be buckled. Such buck...
Strain engineering is a versatile technique used to tune the electronic and optical attributes of a ...
Opening a sizable band gap in the zero-gap germanene without heavy loss of carrier mobility is a key...
Societal continued demand for faster and more compactness to life’s everyday solutions have shifted ...
In recent years,considerable efforts have been done to study silicon, germanium, and silicon/germani...
This work investigates the optical and electronic properties of Germanene – the 2D nanosheet of germ...
We report on the TDDFT calculations of the effect of the size on the optoelectronic properties of ge...
Silicene, a two-dimensional (2D) silicon nanosheet, has gained immense interest due to potential app...
Silicene, a two-dimensional (2D) silicon nanosheet, has gained immense interest due to potential app...
Using first principle calculations, we propose functionalized germanene (GeX, X = H, F, Cl, Br, I, O...
In this work, the structural, electronic and optical properties of germanene and ZnSe substrate nano...
Electronic and topological properties of two-dimensional germanene modified by functional group X (X...
Bulk germanium as a group-IV photonic material has been widely studied due to its relatively large r...
Germanene, a two-dimensional (2D) Dirac semimetal beyond graphene, has been recently synthesized on ...
DFT calculations are performed to investigate the electronic and optical absorption properties of tw...
The heavier analogues of graphene, namely silicene and germanene, are known to be buckled. Such buck...
Strain engineering is a versatile technique used to tune the electronic and optical attributes of a ...
Opening a sizable band gap in the zero-gap germanene without heavy loss of carrier mobility is a key...
Societal continued demand for faster and more compactness to life’s everyday solutions have shifted ...
In recent years,considerable efforts have been done to study silicon, germanium, and silicon/germani...