In the field of solar water splitting, searching for and modifying bulk compositions have been the conventional approaches to enhancing visible-light activity. In this work, manipulation of heterointerfaces in ZnS–GaP multilayer films is demonstrated as a successful alternative approach to achieving visible-light-active photoelectrodes. The photocurrent measured under visible light increases with the increasing number of interfaces for ZnS–GaP multilayer films with the same total thickness, indicating it to be a predominantly interface-driven effect. The activity extends to long wavelengths (650 nm), much longer than those expected for pure ZnS and also longer than those previously reported for GaP. Density functional theory calculations of...
Although ZnO and ZnS are abundant, stable, environmentally benign, their band gap energies (3.44 eV...
Density functional theory calculations are used to investigate the origin of the experimentally obse...
We report on a new class of ZnO/ZnS nanomaterials based on the wurtzite/sphalerite architecture with...
The fundamental behaviour of photocatalysts is very crucial for determining photoactivity. This thes...
Photocatalysis and photoelectrocatalysis form a branch of science in which an electron-hole pair gen...
Wurtzite-type zinc oxide (ZnO) and zinc sulfide (ZnS) have electronic band gaps that are too large f...
ZnS is among the superior photocatalysts for H<sub>2</sub> evolution, whereas the wide bandgap restr...
Recently, semiconductor photocatalysts have received significant interest in addressing the global e...
A wide gap semiconductor material has attracted attention as a heterophotocatalyst because of its li...
Epitaxial layers of ZnS were grown on cleaved GaP(110) surfaces by molecular beam epitaxy in an ultr...
The combination of oxide and heavier chalcogenide layers in thin film photovoltaics suffers limitati...
Antimony chalcogenides represent a family of materials of low toxicity and relative abundance, with ...
In the current work, we report and discuss the features of the design of a ZnS (300 nm)/Ge (300 nm)/...
The wide band gaps and superior conductivity of ZnSₓSe₁₋ₓ semiconductors to amorphous Si suggest an ...
It is of great significance to design an efficient heterostructure for photocatalytic hydrogen produ...
Although ZnO and ZnS are abundant, stable, environmentally benign, their band gap energies (3.44 eV...
Density functional theory calculations are used to investigate the origin of the experimentally obse...
We report on a new class of ZnO/ZnS nanomaterials based on the wurtzite/sphalerite architecture with...
The fundamental behaviour of photocatalysts is very crucial for determining photoactivity. This thes...
Photocatalysis and photoelectrocatalysis form a branch of science in which an electron-hole pair gen...
Wurtzite-type zinc oxide (ZnO) and zinc sulfide (ZnS) have electronic band gaps that are too large f...
ZnS is among the superior photocatalysts for H<sub>2</sub> evolution, whereas the wide bandgap restr...
Recently, semiconductor photocatalysts have received significant interest in addressing the global e...
A wide gap semiconductor material has attracted attention as a heterophotocatalyst because of its li...
Epitaxial layers of ZnS were grown on cleaved GaP(110) surfaces by molecular beam epitaxy in an ultr...
The combination of oxide and heavier chalcogenide layers in thin film photovoltaics suffers limitati...
Antimony chalcogenides represent a family of materials of low toxicity and relative abundance, with ...
In the current work, we report and discuss the features of the design of a ZnS (300 nm)/Ge (300 nm)/...
The wide band gaps and superior conductivity of ZnSₓSe₁₋ₓ semiconductors to amorphous Si suggest an ...
It is of great significance to design an efficient heterostructure for photocatalytic hydrogen produ...
Although ZnO and ZnS are abundant, stable, environmentally benign, their band gap energies (3.44 eV...
Density functional theory calculations are used to investigate the origin of the experimentally obse...
We report on a new class of ZnO/ZnS nanomaterials based on the wurtzite/sphalerite architecture with...