Hydrogen from direct splitting of water molecules using photons is reckoned to be a sustainable and renewable energy solution for the post fossil-fuel era. Efficient photocatalysts, including metal-free photocatalysts, are key determinants of cost-effective hydrogen generation at a large-scale. The search for new materials that are metal-free is therefore ongoing. Recently, 2D phosphorene, a phosphorus analogue of graphene, has been added as a new semiconductor to the family of monolayer-flatland materials. In this review, we focus on analysing the fundamental electronic, optical and chemical properties of 2D phosphorene and assess its suitability as a metal-free water splitting photocatalyst. We also critically analyse its stability agains...
Transitional metals are widely used as co-catalysts boosting photocatalytic H2 production. However, ...
Phosphorene is a new member of the family of two-dimensional (2D) materials. Compared with other 2D ...
Research interest in two-dimensional (2D) materials has grown exponentially across various fields ov...
In the context of a two-dimensional (2D) metal-free photocatalyst, we investigate the electronic, op...
Two-dimensional (2D) materials are the focal point of intensive research efforts due to their unique...
Phosphorene, a single- or few-layered semiconductor material obtained from black phosphorus, has rec...
We report the results of density functional theory-based calculations on monolayer and bilayer green...
Phosphorene, the single- or few-layer form of black phosphorus, was recently rediscovered as a two-d...
We report the results of density functional theory-based calculations on monolayer and bilayer green...
The generation of green hydrogen (H2 ) energy using sunlight is of great significance to solve the w...
Abstract Hydrogen evolution from water splitting over semiconductors has been considered one of the ...
In the present thesis work, we presented an ab-initio study based on Density Functional Theory (DFT)...
The challenge of science and technology is to design and make materials that will dominate the futur...
We introduce the 2D counterpart of layered black phosphorus, which we call phosphorene, as an unexpl...
Phosphorene, a two-dimensional (2D) monolayer of black phosphorus, has attracted considerable theore...
Transitional metals are widely used as co-catalysts boosting photocatalytic H2 production. However, ...
Phosphorene is a new member of the family of two-dimensional (2D) materials. Compared with other 2D ...
Research interest in two-dimensional (2D) materials has grown exponentially across various fields ov...
In the context of a two-dimensional (2D) metal-free photocatalyst, we investigate the electronic, op...
Two-dimensional (2D) materials are the focal point of intensive research efforts due to their unique...
Phosphorene, a single- or few-layered semiconductor material obtained from black phosphorus, has rec...
We report the results of density functional theory-based calculations on monolayer and bilayer green...
Phosphorene, the single- or few-layer form of black phosphorus, was recently rediscovered as a two-d...
We report the results of density functional theory-based calculations on monolayer and bilayer green...
The generation of green hydrogen (H2 ) energy using sunlight is of great significance to solve the w...
Abstract Hydrogen evolution from water splitting over semiconductors has been considered one of the ...
In the present thesis work, we presented an ab-initio study based on Density Functional Theory (DFT)...
The challenge of science and technology is to design and make materials that will dominate the futur...
We introduce the 2D counterpart of layered black phosphorus, which we call phosphorene, as an unexpl...
Phosphorene, a two-dimensional (2D) monolayer of black phosphorus, has attracted considerable theore...
Transitional metals are widely used as co-catalysts boosting photocatalytic H2 production. However, ...
Phosphorene is a new member of the family of two-dimensional (2D) materials. Compared with other 2D ...
Research interest in two-dimensional (2D) materials has grown exponentially across various fields ov...