We investigated the structural, electronic, and photocatalytic properties of the Janus monolayers (MLs) composed of the metal chalcogenides Ga2XY and In2XY (X = S, Se, Te; Y = S, Se, Te). The calculated phonon dispersion curves show that all Janus materials are mechanically stable, presenting the same structures as their pristine counterparts. Janus MLs are characterized by the presence of different chalcogen atoms lying on the opposite sides, giving rise to an electric dipole embedded perpendicularly to the ML, and thus the electronic band alignment becomes side-dependent, a property that can be exploited for different technological applications. Except for Ga2SSe, the other Janus crystals exhibit direct band gaps. On the basis of the GW B...
Through a density functional theory-driven survey, a comprehensive investigation of two-dimensional ...
The new class of Janus two-dimensional (2D) transition-metal dichalcogenides with two different inte...
The highly efficient photocatalytic water splitting process to produce clean energy requires novel s...
Photocatalytic water splitting has received much attention for the production of renewable hydrogen ...
Stable photocatalysts with excellent optical adsorption and low reaction barrier are the key for the...
Stable photocatalysts with excellent optical adsorption and low reaction barrier are the key for the...
Two-dimensional Janus materials have attracted increasing attention in recent years because of their...
Photocatalytic overall water-splitting is known as one of most promising methods to alleviate energy...
Hunting for high-performance photocatalysts to achieve efficient solar conversion is still far from ...
Photocatalysts which can efficiently promote water splitting to generate hydrogen without using sacr...
Structural symmetry-breaking plays a crucial role in determining the electronic band structures of t...
By employing the state-of-the-art density functional theory method, we demonstrate that Janus WSeTe ...
Recently, novel two-dimensional materials for solar water splitting have drawn enormous research att...
Janus two-dimensional (2D) materials, referring to the layers with different surfaces, have attracte...
Janus two-dimensional (2D) materials, referring to the layers with different surfaces, have attracte...
Through a density functional theory-driven survey, a comprehensive investigation of two-dimensional ...
The new class of Janus two-dimensional (2D) transition-metal dichalcogenides with two different inte...
The highly efficient photocatalytic water splitting process to produce clean energy requires novel s...
Photocatalytic water splitting has received much attention for the production of renewable hydrogen ...
Stable photocatalysts with excellent optical adsorption and low reaction barrier are the key for the...
Stable photocatalysts with excellent optical adsorption and low reaction barrier are the key for the...
Two-dimensional Janus materials have attracted increasing attention in recent years because of their...
Photocatalytic overall water-splitting is known as one of most promising methods to alleviate energy...
Hunting for high-performance photocatalysts to achieve efficient solar conversion is still far from ...
Photocatalysts which can efficiently promote water splitting to generate hydrogen without using sacr...
Structural symmetry-breaking plays a crucial role in determining the electronic band structures of t...
By employing the state-of-the-art density functional theory method, we demonstrate that Janus WSeTe ...
Recently, novel two-dimensional materials for solar water splitting have drawn enormous research att...
Janus two-dimensional (2D) materials, referring to the layers with different surfaces, have attracte...
Janus two-dimensional (2D) materials, referring to the layers with different surfaces, have attracte...
Through a density functional theory-driven survey, a comprehensive investigation of two-dimensional ...
The new class of Janus two-dimensional (2D) transition-metal dichalcogenides with two different inte...
The highly efficient photocatalytic water splitting process to produce clean energy requires novel s...