MoS2 crystals exhibit excellent catalytic properties and great potential for photocatalytic production of solar fuels such as hydrogen gas. In this regard, the photocatalytic stability of exfoliated single- and few-layer MoS2 immersed in water is investigated by μ-Raman spectroscopy. We find that while the basal plane of MoS2 can be treated as stable under photocatalytic conditions, the edge sites and presumably also defect sites are highly affected by a photoinduced corrosion process. The edge sites of MoS2 monolayers are significantly more resistant to photocatalytic degradation compared to MoS2 multilayer edge sites. The photostability of MoS2 edge sites depends on the photon energy with respect to the band gap in MoS2 and also on the pr...
Bulk-to-single layer molybdenum disulfide (MoS2) is widely used as a robust candidate for photodegra...
The layered structure of molybdenum disulfide (MoS2) is structurally similar to that of graphite, wi...
Sustainable hydrogen production is attracting increasing attention and visible-light-driven water sp...
MoS2 crystals exhibit excellent catalytic properties and great potential for photocatalytic producti...
We investigate the hydrogen evolution activity in the dark and under illumination above the band gap...
Abstract Photocatalytic degradation is a promising method for removing persistent organic pollutants...
MoS2 is a noble metal-free, earth-abundant, light-harvesting photocatalyst with simple synthesis tec...
MoS2 is a noble metal-free, earth-abundant, light-harvesting photocatalyst with simple synthesis tec...
MoS2 is a noble metal-free, earth-abundant, light-harvesting photocatalyst with simple synthesis tec...
MoS2 is a noble metal-free, earth-abundant, light-harvesting photocatalyst with simple synthesis tec...
MoS2 is a noble metal-free, earth-abundant, light-harvesting photocatalyst with simple synthesis tec...
MoS2 is a noble metal-free, earth-abundant, light-harvesting photocatalyst with simple synthesis tec...
MoS2 is a noble metal-free, earth-abundant, light-harvesting photocatalyst with simple synthesis tec...
MoS2 is a noble metal-free, earth-abundant, light-harvesting photocatalyst with simple synthesis tec...
We report herein investigation on crystallization of amorphous molybdenum sulfide a-MoSx induced by ...
Bulk-to-single layer molybdenum disulfide (MoS2) is widely used as a robust candidate for photodegra...
The layered structure of molybdenum disulfide (MoS2) is structurally similar to that of graphite, wi...
Sustainable hydrogen production is attracting increasing attention and visible-light-driven water sp...
MoS2 crystals exhibit excellent catalytic properties and great potential for photocatalytic producti...
We investigate the hydrogen evolution activity in the dark and under illumination above the band gap...
Abstract Photocatalytic degradation is a promising method for removing persistent organic pollutants...
MoS2 is a noble metal-free, earth-abundant, light-harvesting photocatalyst with simple synthesis tec...
MoS2 is a noble metal-free, earth-abundant, light-harvesting photocatalyst with simple synthesis tec...
MoS2 is a noble metal-free, earth-abundant, light-harvesting photocatalyst with simple synthesis tec...
MoS2 is a noble metal-free, earth-abundant, light-harvesting photocatalyst with simple synthesis tec...
MoS2 is a noble metal-free, earth-abundant, light-harvesting photocatalyst with simple synthesis tec...
MoS2 is a noble metal-free, earth-abundant, light-harvesting photocatalyst with simple synthesis tec...
MoS2 is a noble metal-free, earth-abundant, light-harvesting photocatalyst with simple synthesis tec...
MoS2 is a noble metal-free, earth-abundant, light-harvesting photocatalyst with simple synthesis tec...
We report herein investigation on crystallization of amorphous molybdenum sulfide a-MoSx induced by ...
Bulk-to-single layer molybdenum disulfide (MoS2) is widely used as a robust candidate for photodegra...
The layered structure of molybdenum disulfide (MoS2) is structurally similar to that of graphite, wi...
Sustainable hydrogen production is attracting increasing attention and visible-light-driven water sp...