In this work, ab initio Density Functional Theory calculations are performed to investigate the evolution of the electronic and optical properties of 2D Tellurium—called Tellurene—for three different allotropic forms (α-, β- and γ-phase), as a function of the number of layers. We estimate the exciton binding energies and radii of the studied systems, using a 2D analytical model. Our results point out that these quantities are strongly dependent on the allotropic form, as well as on the number of layers. Remarkably, we show that the adopted method is suitable for reliably predicting, also in the case of Tellurene, the exciton binding energy, without the need of computationally demanding calculations, possibly suggesting interesting insights ...
Two-dimensional (2D) allotropes of tellurium (Te), recently coined as tellurene, are currently an em...
Two-dimensional (2D) allotropes of tellurium (Te), recently coined as tellurene, are currently an em...
International audienceElectronic structure of series of tellurium oxide crystals within the TeO 2-Te...
In this work, ab initio Density Functional Theory calculations are performed to investigate the evol...
In this work, ab initio Density Functional Theory calculations are performed to investigate the evol...
In this work, ab initio Density Functional Theory calculations are performed to investigate the evol...
In this work, ab initio Density Functional Theory calculations are performed to investigate the evol...
Strain engineering is a promising and fascinating approach to tailoring the electrical and optical p...
Herein we report a prediction of a highly kinetic stable layered structure of tellurium (namely, bul...
We present first-principles investigations of the origin of the stability of the helical structure o...
With first principles calculations, we predict a novel stable 2D layered structure for group VI elem...
The ability to predict temperature-dependent properties of solids from ab initio theories alone has ...
We present first-principles investigations of the origin of the stability of the helical structure o...
International audienceArsenic telluride, As2Te3, is a layered van der Waals (vdW) semiconducting mat...
Semiconductor tellurium is an excellent performance material, tellurium and its compounds have been ...
Two-dimensional (2D) allotropes of tellurium (Te), recently coined as tellurene, are currently an em...
Two-dimensional (2D) allotropes of tellurium (Te), recently coined as tellurene, are currently an em...
International audienceElectronic structure of series of tellurium oxide crystals within the TeO 2-Te...
In this work, ab initio Density Functional Theory calculations are performed to investigate the evol...
In this work, ab initio Density Functional Theory calculations are performed to investigate the evol...
In this work, ab initio Density Functional Theory calculations are performed to investigate the evol...
In this work, ab initio Density Functional Theory calculations are performed to investigate the evol...
Strain engineering is a promising and fascinating approach to tailoring the electrical and optical p...
Herein we report a prediction of a highly kinetic stable layered structure of tellurium (namely, bul...
We present first-principles investigations of the origin of the stability of the helical structure o...
With first principles calculations, we predict a novel stable 2D layered structure for group VI elem...
The ability to predict temperature-dependent properties of solids from ab initio theories alone has ...
We present first-principles investigations of the origin of the stability of the helical structure o...
International audienceArsenic telluride, As2Te3, is a layered van der Waals (vdW) semiconducting mat...
Semiconductor tellurium is an excellent performance material, tellurium and its compounds have been ...
Two-dimensional (2D) allotropes of tellurium (Te), recently coined as tellurene, are currently an em...
Two-dimensional (2D) allotropes of tellurium (Te), recently coined as tellurene, are currently an em...
International audienceElectronic structure of series of tellurium oxide crystals within the TeO 2-Te...