We describe the direct formation of mixed-phase (1T and 2H) MoS2 layers on Si as a photocathode via atomic layer deposition (ALD) for application in the photoelectrochemical (PEC) reduction of water to hydrogen. Without typical series-metal interfaces between Si and MoS2, our p-Si/SiOx/MoS2 photocathode showed efficient and stable operation in hydrogen evolution reactions (HERs). The resulting performance could be explained by spatially genuine device architectures in three dimensions (i.e., laterally homo and vertically heterojunction structures). The ALD-grown MoS2 overlayer with the mixed-phase 1T and 2H homojunction passivates light absorber and surface states and functions as a monolithic structure for effective charge transport within...
We demonstrate that applying atomic layer deposition-derived molybdenum disulfide (MoS2) catalytic c...
MoS2 is a noble metal-free, earth-abundant, light-harvesting photocatalyst with simple synthesis tec...
To date, the in situ fabrication of the large-scale van der Waals multi-heterojunction transition me...
MoS2 composed of earth‐abundant elements is considered as a promising hydrogen evolution reaction (H...
Coupling two semiconductors together to construct a Z-scheme type photocatalytic system is an effici...
A multilayered p-type photoabsorber based on kesterite Cu2ZnSnSe4 has been functionalized with inexp...
Integration of molybdenum disulfide (MoS2) onto high surface area photocathodes is highly desired to...
Silicon is a promising photocathode material for solar hydrogen evolution because of its small band ...
Two-dimensional (2D) single-layer MoS<sub>2</sub> nanosheets are demonstrated as efficient photocata...
We investigate the hydrogen evolution activity in the dark and under illumination above the band gap...
Diverse methods have been employed to synthesize MoS2 and MoSe2 catalyst systems. Herein, a combined...
In photoelectrochemical (PEC) water splitting systems, crucial obstacles limiting their performance ...
Mild-mannered catalyst: A novel procedure to load a MoS2 co-catalyst onto the surface of silicon und...
Abstract Transition-metal dichalcogenide (TMD) semiconductors have attracted interest as photoelectr...
Mild-mannered catalyst: A novel procedure to load a MoS2 co-catalyst onto the surface of silicon und...
We demonstrate that applying atomic layer deposition-derived molybdenum disulfide (MoS2) catalytic c...
MoS2 is a noble metal-free, earth-abundant, light-harvesting photocatalyst with simple synthesis tec...
To date, the in situ fabrication of the large-scale van der Waals multi-heterojunction transition me...
MoS2 composed of earth‐abundant elements is considered as a promising hydrogen evolution reaction (H...
Coupling two semiconductors together to construct a Z-scheme type photocatalytic system is an effici...
A multilayered p-type photoabsorber based on kesterite Cu2ZnSnSe4 has been functionalized with inexp...
Integration of molybdenum disulfide (MoS2) onto high surface area photocathodes is highly desired to...
Silicon is a promising photocathode material for solar hydrogen evolution because of its small band ...
Two-dimensional (2D) single-layer MoS<sub>2</sub> nanosheets are demonstrated as efficient photocata...
We investigate the hydrogen evolution activity in the dark and under illumination above the band gap...
Diverse methods have been employed to synthesize MoS2 and MoSe2 catalyst systems. Herein, a combined...
In photoelectrochemical (PEC) water splitting systems, crucial obstacles limiting their performance ...
Mild-mannered catalyst: A novel procedure to load a MoS2 co-catalyst onto the surface of silicon und...
Abstract Transition-metal dichalcogenide (TMD) semiconductors have attracted interest as photoelectr...
Mild-mannered catalyst: A novel procedure to load a MoS2 co-catalyst onto the surface of silicon und...
We demonstrate that applying atomic layer deposition-derived molybdenum disulfide (MoS2) catalytic c...
MoS2 is a noble metal-free, earth-abundant, light-harvesting photocatalyst with simple synthesis tec...
To date, the in situ fabrication of the large-scale van der Waals multi-heterojunction transition me...