We investigate the electronic properties of Germanane and analyze its importance as 2-D channel material in switching devices. Considering two types of morphologies, namely, chair and boat, we study the real band structure, the effective mass variation, and the complex band structure of unstrained Germanane by density-functional theory. The chair morphology turns out to be a more effective channel material for switching devices than the boat morphology. Furthermore, we study the effect of elastic strain, van der Waals force, and vertical electric field on these band structure properties. Due to its very low effective mass with relatively high-energy bandgap, in comparison with the other 2-D materials, Germanane appears to provide superior p...
Recently, several research groups have reported the growth of germanene, a new member of the graphen...
Societal continued demand for faster and more compactness to life’s everyday solutions have shifted ...
In this work, the structural and electronic properties of graphene/germanene heterobilayer is invest...
Comprehensive density functional theory computations with van der Waals (vdW) correction demonstrate...
Two-dimensional (2D) materials recently emerged as a new type of nanostructures exhibited large pote...
A new two dimensional (2D) material—germanane—has been synthesised recently with promising electrica...
Two-dimensional (2D) materials are a class of materials that consist of a single layer of atoms arra...
Electronic and topological properties of two-dimensional germanene modified by functional group X (X...
Germanene, a two-dimensional (2D) Dirac semimetal beyond graphene, has been recently synthesized on ...
Similar to carbon, germanium exists in various structures such as three-dimensional crystalline germ...
Using first principle calculations, we propose functionalized germanene (GeX, X = H, F, Cl, Br, I, O...
Opening a sizable band gap in the zero-gap germanene without heavy loss of carrier mobility is a key...
In this chapter a brief review of the current status of germanene, that is, the germanium analog of ...
The heavier analogues of graphene, namely silicene and germanene, are known to be buckled. Such buck...
Germanene is a novel 2D material with promising optoelectronic properties, tuning of which is to be ...
Recently, several research groups have reported the growth of germanene, a new member of the graphen...
Societal continued demand for faster and more compactness to life’s everyday solutions have shifted ...
In this work, the structural and electronic properties of graphene/germanene heterobilayer is invest...
Comprehensive density functional theory computations with van der Waals (vdW) correction demonstrate...
Two-dimensional (2D) materials recently emerged as a new type of nanostructures exhibited large pote...
A new two dimensional (2D) material—germanane—has been synthesised recently with promising electrica...
Two-dimensional (2D) materials are a class of materials that consist of a single layer of atoms arra...
Electronic and topological properties of two-dimensional germanene modified by functional group X (X...
Germanene, a two-dimensional (2D) Dirac semimetal beyond graphene, has been recently synthesized on ...
Similar to carbon, germanium exists in various structures such as three-dimensional crystalline germ...
Using first principle calculations, we propose functionalized germanene (GeX, X = H, F, Cl, Br, I, O...
Opening a sizable band gap in the zero-gap germanene without heavy loss of carrier mobility is a key...
In this chapter a brief review of the current status of germanene, that is, the germanium analog of ...
The heavier analogues of graphene, namely silicene and germanene, are known to be buckled. Such buck...
Germanene is a novel 2D material with promising optoelectronic properties, tuning of which is to be ...
Recently, several research groups have reported the growth of germanene, a new member of the graphen...
Societal continued demand for faster and more compactness to life’s everyday solutions have shifted ...
In this work, the structural and electronic properties of graphene/germanene heterobilayer is invest...