ZnIn2S4 (ZIS) is an efficient photocatalyst for solar hydrogen (H2) generation from water splitting owing to its suitable band gap, excellent photocatalytic behaviour and high stability. Nevertheless, modifications are still necessary to further enhance the photocatalytic performance of ZIS for practical applications. This has led to our interest in exploring phosphorus doping on ZIS for photocatalytic water splitting, which has not been studied till date. Herein, phosphorus-doped ZnIn2S4 (P-ZIS) was modelled via Density Functional Theory to investigate the effects of doping phosphorus on the structural and electronics properties of ZIS as well as its performance toward photocatalytic water splitting. This work revealed that the replacement...
Covalent organic frameworks (COFs) exhibit significant prospects in photocatalytic H2 evolution beca...
Abstract Engineering an efficient semiconductor to sustainably produce green hydrogen via solar-driv...
It is charming to develop direct Z-scheme heterostructure catalysts for efficiently boosting photoca...
Construction of heterojunction is conventionally regarded as the prevailing technique to render effe...
Engineering the electronic properties of semiconductor-based photocatalysts using elemental doping i...
Photocatalytic water splitting is a potential solution for energy and environmental problems. By usi...
Zinc phosphides (ZnP2 and Zn3P2) are emerging absorber materials for photovoltaic applications owing...
Solar-driven water splitting over semiconductor photocatalysts is a promising approach for convertin...
Photocatalytic water splitting is a potential solution for energy and environmental problems. By usi...
It is of great significance to design an efficient heterostructure for photocatalytic hydrogen produ...
Metalloporphyrin assemblies such as Zn–porphyrins are significant photoactive compounds with a...
Zinc phosphides (ZnP2 and Zn3P2) are emerging absorber materials for photovoltaic applications owing...
The resurgence of interest in zinc phosphide compounds as efficient solar absorbers has initiated in...
The resurgence of interest in zinc phosphide compounds as efficient solar absorbers has initiated in...
It is a challenge to regulate charge flow synergistically at the atomic level to modulate gradient h...
Covalent organic frameworks (COFs) exhibit significant prospects in photocatalytic H2 evolution beca...
Abstract Engineering an efficient semiconductor to sustainably produce green hydrogen via solar-driv...
It is charming to develop direct Z-scheme heterostructure catalysts for efficiently boosting photoca...
Construction of heterojunction is conventionally regarded as the prevailing technique to render effe...
Engineering the electronic properties of semiconductor-based photocatalysts using elemental doping i...
Photocatalytic water splitting is a potential solution for energy and environmental problems. By usi...
Zinc phosphides (ZnP2 and Zn3P2) are emerging absorber materials for photovoltaic applications owing...
Solar-driven water splitting over semiconductor photocatalysts is a promising approach for convertin...
Photocatalytic water splitting is a potential solution for energy and environmental problems. By usi...
It is of great significance to design an efficient heterostructure for photocatalytic hydrogen produ...
Metalloporphyrin assemblies such as Zn–porphyrins are significant photoactive compounds with a...
Zinc phosphides (ZnP2 and Zn3P2) are emerging absorber materials for photovoltaic applications owing...
The resurgence of interest in zinc phosphide compounds as efficient solar absorbers has initiated in...
The resurgence of interest in zinc phosphide compounds as efficient solar absorbers has initiated in...
It is a challenge to regulate charge flow synergistically at the atomic level to modulate gradient h...
Covalent organic frameworks (COFs) exhibit significant prospects in photocatalytic H2 evolution beca...
Abstract Engineering an efficient semiconductor to sustainably produce green hydrogen via solar-driv...
It is charming to develop direct Z-scheme heterostructure catalysts for efficiently boosting photoca...