The inefficient separation of photoexcited electrons and holes as well as the lack of sufficient reactive sites are considered as the major factors hindering the catalytic activity of the semiconductors. Herein, we report an environmentally friendly and energy-saving method to realize the co-deposition of amorphous MoSx onto ZnIn2S4 (ZIS) nanosheets, through which effectively enhanced performance of H2 generation from water reduction can be achieved. Furtherly, defect-poor ZIS and defect-rich O-doped ZIS (O-ZIS) were taken as the fabrication matrixes respectively, and larger enhancement resulting from MoSx loading over O-ZIS than that over ZIS was achieved, suggesting the synergistic effect that one plus one is greater than two, primarily d...
MoS2 quantum dots (MSQDs) with high and stable dispersion in water were prepared via a facile one-po...
In situ grown amorphous MoSx catalysts in an organic dye-sensitized system have shown promising perf...
Developing non-precious metal catalysts with both high efficiency and long-term stability is the top...
The introduction of impure atoms or crystal defects is a promising strategy for enhancing the photoc...
Facilitating charge separation as well as surface redox reactions is central to improve semiconducto...
Solar water splitting using semiconductor photocatalysts is considered to be one of the economical a...
H2O2 photosynthesis has attracted great interest in harvesting and converting solar energy to chemic...
Constructing hierarchical and ultrathin‐structured metal sulfides is beneficial for achieving high‐e...
Coupling two semiconductors together to construct a Z-scheme type photocatalytic system is an effici...
Design of highly efficient catalysts has already been a challenge in the exploration of renewable en...
A Schottky junction is an ideal candidate for photocatalytic H2 evolution since the photo-induced ch...
Engineering the electronic properties of semiconductor-based photocatalysts using elemental doping i...
Abstract Engineering an efficient semiconductor to sustainably produce green hydrogen via solar-driv...
Engineering an efficient semiconductor to sustainably produce green hydrogen via solar-driven water ...
MoS2 quantum dots (MSQDs) with high and stable dispersion in water were prepared via a facile one-po...
MoS2 quantum dots (MSQDs) with high and stable dispersion in water were prepared via a facile one-po...
In situ grown amorphous MoSx catalysts in an organic dye-sensitized system have shown promising perf...
Developing non-precious metal catalysts with both high efficiency and long-term stability is the top...
The introduction of impure atoms or crystal defects is a promising strategy for enhancing the photoc...
Facilitating charge separation as well as surface redox reactions is central to improve semiconducto...
Solar water splitting using semiconductor photocatalysts is considered to be one of the economical a...
H2O2 photosynthesis has attracted great interest in harvesting and converting solar energy to chemic...
Constructing hierarchical and ultrathin‐structured metal sulfides is beneficial for achieving high‐e...
Coupling two semiconductors together to construct a Z-scheme type photocatalytic system is an effici...
Design of highly efficient catalysts has already been a challenge in the exploration of renewable en...
A Schottky junction is an ideal candidate for photocatalytic H2 evolution since the photo-induced ch...
Engineering the electronic properties of semiconductor-based photocatalysts using elemental doping i...
Abstract Engineering an efficient semiconductor to sustainably produce green hydrogen via solar-driv...
Engineering an efficient semiconductor to sustainably produce green hydrogen via solar-driven water ...
MoS2 quantum dots (MSQDs) with high and stable dispersion in water were prepared via a facile one-po...
MoS2 quantum dots (MSQDs) with high and stable dispersion in water were prepared via a facile one-po...
In situ grown amorphous MoSx catalysts in an organic dye-sensitized system have shown promising perf...
Developing non-precious metal catalysts with both high efficiency and long-term stability is the top...