Phosphorene, the 2D form of black phosphorus, has recently attracted interest for optoelectronic and tribological applications. However, its promising properties are affected by the strong tendency of the layers to oxidize in ambient conditions. A significant effort has been made to identify the role of oxygen and water in the oxidation process. In this work, we introduce a first-principles study of the phosphorene phase diagram and provide a quantitative estimate of the interaction of pristine and fully oxidized phosphorene layers with oxygen and water molecules. Specifically, we study oxidized layers with oxygen coverages of 25% and 50% that keep the typical anisotropic structure of the layers. We found that hydroxilated and hydrogenated ...
The potential for phosphorene-based devices has been compromised by the material's fast degradation ...
Black phosphorus (BP) has attracted significant interest as a monolayer or few-layer material with e...
Two-dimensional (2D) materials have been studied widely owing to their outstanding properties since ...
Phosphorene, the 2D form of black phosphorus, has recently attracted interest for optoelectronic and...
Phosphorene is emerging as an important two-dimensional semiconductor, but controlling the surface c...
Phosphorene, a two-dimensional (2D) monolayer of black phosphorous (BP), has generated significant t...
Phosphorene is emerging as an important two-dimensional semiconductor, but controlling the surface c...
© 2016 IOP Publishing Ltd. Phosphorene is a promising two-dimensional (2D) material with a direct ba...
We combine ab initio density functional theory calculations with the equivalent cores approximation ...
© The Royal Society of Chemistry. Phosphorene, the monolayer form of (black) phosphorus, was recentl...
Black phosphorus (BP) has attracted significant interest as a monolayer or few-layer material with e...
Simulations based on electronic density functional theory have been employed to study the stability...
Phosphorene, a single layer of black phosphorus, is attracting interest for several applications, am...
In the present thesis work, we presented an ab-initio study based on Density Functional Theory (DFT)...
Phosphorene possesses a great potential for tribological applications due to its layered structure a...
The potential for phosphorene-based devices has been compromised by the material's fast degradation ...
Black phosphorus (BP) has attracted significant interest as a monolayer or few-layer material with e...
Two-dimensional (2D) materials have been studied widely owing to their outstanding properties since ...
Phosphorene, the 2D form of black phosphorus, has recently attracted interest for optoelectronic and...
Phosphorene is emerging as an important two-dimensional semiconductor, but controlling the surface c...
Phosphorene, a two-dimensional (2D) monolayer of black phosphorous (BP), has generated significant t...
Phosphorene is emerging as an important two-dimensional semiconductor, but controlling the surface c...
© 2016 IOP Publishing Ltd. Phosphorene is a promising two-dimensional (2D) material with a direct ba...
We combine ab initio density functional theory calculations with the equivalent cores approximation ...
© The Royal Society of Chemistry. Phosphorene, the monolayer form of (black) phosphorus, was recentl...
Black phosphorus (BP) has attracted significant interest as a monolayer or few-layer material with e...
Simulations based on electronic density functional theory have been employed to study the stability...
Phosphorene, a single layer of black phosphorus, is attracting interest for several applications, am...
In the present thesis work, we presented an ab-initio study based on Density Functional Theory (DFT)...
Phosphorene possesses a great potential for tribological applications due to its layered structure a...
The potential for phosphorene-based devices has been compromised by the material's fast degradation ...
Black phosphorus (BP) has attracted significant interest as a monolayer or few-layer material with e...
Two-dimensional (2D) materials have been studied widely owing to their outstanding properties since ...