In this paper, we report a novel matchlike zinc oxide (ZnO)/gold (Au) heterostructure with plasmonic-enhanced photoelectrochemical (PEC) activity for solar hydrogen production. The matchlike heterostructure with Au nanoparticles coated on the tip of ZnO nanorods is in situ grown on a zinc (Zn) substrate by using a facile hydrothermal and photoreduction combined approach. This unique heterostructure exhibits plasmonic-enhanced light absorption, efficient charge separation and transportation properties with tunable Au contents. The photocurrent density of the matchlike ZnO/Au heterostructure reaches 9.11 mA/cm<sup>2</sup> at an applied potential of 1.0 V (vs Ag/AgCl) with an Au/Zn atomic ratio of 0.039, which is much higher than that of the p...
We report a promising simple strategy for improving the performance of the photoanode for photoelect...
Hydrogen production from water splitting using solar energy based on photoelectrochemical (PEC) cell...
Hydrogen production from water splitting using solar energy based on photoelectrochemical (PEC) cell...
Efficient solar-to-hydrogen photoelectrodes need harvest sunlight to capacity and improve the separa...
To date, solar energy generation devices have been widely studied to meet a clean and sustainable en...
To date, solar energy generation devices have been widely studied to meet a clean and sustainable en...
Artificial photosynthesis using semiconductors has been investigated for more than three decades for...
To enhance the charge separation and kinetics of water oxidation using a BiVO4 photoanode, a BiVO4/Z...
Band bending modification of metal/semiconductor hybrid nanostructures requires low-cost and effecti...
Band bending modification of metal/semiconductor hybrid nanostructures requires low-cost and effecti...
Designing a highly efficient and stable electrode is of great importance for photoelectrochemical (P...
Heterostructures of semiconductor metal oxides and metals have been studied extensively due to the s...
To improve photoelectrochemical (PEC) water splitting, various ZnO nanostructures (nanorods (NRs), n...
Hydrogen is produced from water by electrolysis or photolysis. Although, photocatalysis demands sign...
A hierarchically patterned metal/semiconductor (gold nanoparticles/ZnO nanowires) nanostructure with...
We report a promising simple strategy for improving the performance of the photoanode for photoelect...
Hydrogen production from water splitting using solar energy based on photoelectrochemical (PEC) cell...
Hydrogen production from water splitting using solar energy based on photoelectrochemical (PEC) cell...
Efficient solar-to-hydrogen photoelectrodes need harvest sunlight to capacity and improve the separa...
To date, solar energy generation devices have been widely studied to meet a clean and sustainable en...
To date, solar energy generation devices have been widely studied to meet a clean and sustainable en...
Artificial photosynthesis using semiconductors has been investigated for more than three decades for...
To enhance the charge separation and kinetics of water oxidation using a BiVO4 photoanode, a BiVO4/Z...
Band bending modification of metal/semiconductor hybrid nanostructures requires low-cost and effecti...
Band bending modification of metal/semiconductor hybrid nanostructures requires low-cost and effecti...
Designing a highly efficient and stable electrode is of great importance for photoelectrochemical (P...
Heterostructures of semiconductor metal oxides and metals have been studied extensively due to the s...
To improve photoelectrochemical (PEC) water splitting, various ZnO nanostructures (nanorods (NRs), n...
Hydrogen is produced from water by electrolysis or photolysis. Although, photocatalysis demands sign...
A hierarchically patterned metal/semiconductor (gold nanoparticles/ZnO nanowires) nanostructure with...
We report a promising simple strategy for improving the performance of the photoanode for photoelect...
Hydrogen production from water splitting using solar energy based on photoelectrochemical (PEC) cell...
Hydrogen production from water splitting using solar energy based on photoelectrochemical (PEC) cell...