In this work, the structural, electronic and optical properties of germanene and ZnSe substrate nanocomposites have been investigated using first-principles calculations. We found that the large direct-gap ZnSe semiconductors and zero-gap germanene form a typical orbital hybridization heterostructure with a strong binding energy, which shows a moderate direct band gap of 0.503 eV in the most stable pattern. Furthermore, the heterostructure undergoes semiconductor-to-metal band gap transition when subjected to external out-of-plane electric field. We also found that applying external strain and compressing the interlayer distance are two simple ways of tuning the electronic structure. An unexpected indirect-direct band gap transition is also...
In this paper we present a comprehensive study of the tetrahedral semiconductor ZnSe crystallizing i...
The electronic structure of semiconducting 2D materials such as monolayer transition metal dichalcog...
Although graphene, silicene and germanene are an interesting thin nanomaterial with various applicat...
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...
Germanene is a novel 2D material with promising optoelectronic properties, tuning of which is to be ...
With a direct bandgap, two-dimensional (2D) ZnSe is a promising semiconductor material in photoelect...
Germanene, a two-dimensional (2D) Dirac semimetal beyond graphene, has been recently synthesized on ...
Electronic and topological properties of two-dimensional germanene modified by functional group X (X...
This work investigates the optical and electronic properties of Germanene – the 2D nanosheet of germ...
Opening a sizable band gap in the zero-gap germanene without heavy loss of carrier mobility is a key...
Using first principle calculations, we propose functionalized germanene (GeX, X = H, F, Cl, Br, I, O...
By using first-principles simulations, we investigate the interaction of silicene and germanene with...
Oral presentation given at the European Materials Research Society Spring Symposium, held in Lille (...
By using ab initio calculations, we predict that a vertical electric field is able to open a band ga...
In this paper we present a comprehensive study of the tetrahedral semiconductor ZnSe crystallizing i...
The electronic structure of semiconducting 2D materials such as monolayer transition metal dichalcog...
Although graphene, silicene and germanene are an interesting thin nanomaterial with various applicat...
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...
Germanene is a novel 2D material with promising optoelectronic properties, tuning of which is to be ...
With a direct bandgap, two-dimensional (2D) ZnSe is a promising semiconductor material in photoelect...
Germanene, a two-dimensional (2D) Dirac semimetal beyond graphene, has been recently synthesized on ...
Electronic and topological properties of two-dimensional germanene modified by functional group X (X...
This work investigates the optical and electronic properties of Germanene – the 2D nanosheet of germ...
Opening a sizable band gap in the zero-gap germanene without heavy loss of carrier mobility is a key...
Using first principle calculations, we propose functionalized germanene (GeX, X = H, F, Cl, Br, I, O...
By using first-principles simulations, we investigate the interaction of silicene and germanene with...
Oral presentation given at the European Materials Research Society Spring Symposium, held in Lille (...
By using ab initio calculations, we predict that a vertical electric field is able to open a band ga...
In this paper we present a comprehensive study of the tetrahedral semiconductor ZnSe crystallizing i...
The electronic structure of semiconducting 2D materials such as monolayer transition metal dichalcog...
Although graphene, silicene and germanene are an interesting thin nanomaterial with various applicat...