Abstract Engineering an efficient semiconductor to sustainably produce green hydrogen via solar-driven water splitting is one of the cutting-edge strategies for carbon-neutral energy ecosystem. Herein, a superhydrophilic green hollow ZnIn2S4 (gZIS) was fabricated to realize unassisted photocatalytic overall water splitting. The hollow hierarchical framework benefits exposure of intrinsically active facets and activates inert basal planes. The superhydrophilic nature of gZIS promotes intense surface water molecule interactions. The presence of vacancies within gZIS facilitates photon energy utilization and charge transfer. Systematic theoretical computations signify the defect-induced charge redistribution of gZIS enhancing water activation ...
Solar-driven water-splitting has been considered as a promising technology for large-scale generatio...
It is charming to develop direct Z-scheme heterostructure catalysts for efficiently boosting photoca...
The introduction of impure atoms or crystal defects is a promising strategy for enhancing the photoc...
Engineering an efficient semiconductor to sustainably produce green hydrogen via solar-driven water ...
Here we demonstrate the delicate design and construction of hierarchical Co9S8@ZnIn2S4 heterostructu...
Here we demonstrate the delicate design and construction of hierarchical Co9S8@ZnIn2S4 heterostructu...
Constructing hierarchical and ultrathin‐structured metal sulfides is beneficial for achieving high‐e...
Construction of heterojunction is conventionally regarded as the prevailing technique to render effe...
Developing efficient catalysts to produce clean fuel by using solar energy has long been the goal to...
For the first time, it is demonstrated that the robust organic semiconductor g-C<sub>3</sub>N<sub>4<...
H2O2 photosynthesis has attracted great interest in harvesting and converting solar energy to chemic...
The inefficient separation of photoexcited electrons and holes as well as the lack of sufficient rea...
Ultrathin ZnIn2 S4 nanosheets (NSs) are grown on Co/N-doped graphitic carbon (NGC) nanocages, compos...
The overwhelming challenge of depleting fossil fuels and anthropogenic carbon emissions has driven r...
Photocatalysts derived from semiconductor heterojunctions for water splitting have bright prospects ...
Solar-driven water-splitting has been considered as a promising technology for large-scale generatio...
It is charming to develop direct Z-scheme heterostructure catalysts for efficiently boosting photoca...
The introduction of impure atoms or crystal defects is a promising strategy for enhancing the photoc...
Engineering an efficient semiconductor to sustainably produce green hydrogen via solar-driven water ...
Here we demonstrate the delicate design and construction of hierarchical Co9S8@ZnIn2S4 heterostructu...
Here we demonstrate the delicate design and construction of hierarchical Co9S8@ZnIn2S4 heterostructu...
Constructing hierarchical and ultrathin‐structured metal sulfides is beneficial for achieving high‐e...
Construction of heterojunction is conventionally regarded as the prevailing technique to render effe...
Developing efficient catalysts to produce clean fuel by using solar energy has long been the goal to...
For the first time, it is demonstrated that the robust organic semiconductor g-C<sub>3</sub>N<sub>4<...
H2O2 photosynthesis has attracted great interest in harvesting and converting solar energy to chemic...
The inefficient separation of photoexcited electrons and holes as well as the lack of sufficient rea...
Ultrathin ZnIn2 S4 nanosheets (NSs) are grown on Co/N-doped graphitic carbon (NGC) nanocages, compos...
The overwhelming challenge of depleting fossil fuels and anthropogenic carbon emissions has driven r...
Photocatalysts derived from semiconductor heterojunctions for water splitting have bright prospects ...
Solar-driven water-splitting has been considered as a promising technology for large-scale generatio...
It is charming to develop direct Z-scheme heterostructure catalysts for efficiently boosting photoca...
The introduction of impure atoms or crystal defects is a promising strategy for enhancing the photoc...