Most traditional powder photocatalysts are not easily recovered. Herein, we report a flexible and recoverable photocatalyst with superior photocatalytic activity, in which MoS2/TiO2 heterojunctions are grown on amorphous carbon-coated carbon textiles (CT@C-MoS2/TiO2). Recoverable CT@C-MoS2/TiO2 textile was used to degrade 10 mg L–1 rhodamine B, leading to a degradation rate of up to 98.8 % within 30 min. Such a degradation rate is much higher than that of most of the reported studies. A density functional theory (DFT) calculation results illustrate charge transfer mechanism inside TiO2-C, MoS2-C, and MoS2/TiO2 heterojunctions, which shows that CT@C-MoS2/TiO2 textile with three electron separation channels has a high photogenerated carrier s...
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...
The development of photocatalysts that utilize sunlight is very important for solving the energy cri...
The recycling technology of photocatalyst powdery has hardly been mature in the photocatalytic oxida...
The recycling technology of photocatalyst powdery has hardly been mature in the photocatalytic oxida...
The recycling technology of photocatalyst powdery has hardly been mature in the photocatalytic oxida...
Photocatalytic reduction of CO2 into solar fuels is recognized an attractive approach to solve the e...
Photocatalytic reduction of CO2 into solar fuels is recognized an attractive approach to solve the e...
Photocatalytic reduction of CO2 into solar fuels is recognized an attractive approach to solve the e...
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...
The development of photocatalysts that utilize sunlight is very important for solving the energy cri...
The recycling technology of photocatalyst powdery has hardly been mature in the photocatalytic oxida...
The recycling technology of photocatalyst powdery has hardly been mature in the photocatalytic oxida...
The recycling technology of photocatalyst powdery has hardly been mature in the photocatalytic oxida...
Photocatalytic reduction of CO2 into solar fuels is recognized an attractive approach to solve the e...
Photocatalytic reduction of CO2 into solar fuels is recognized an attractive approach to solve the e...
Photocatalytic reduction of CO2 into solar fuels is recognized an attractive approach to solve the e...
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...
The development of photocatalysts that utilize sunlight is very important for solving the energy cri...