Hybrid microwave annealing (HMA) with a silicon susceptor in a household microwave oven produces BiVO4-based photoanodes of much improved performance in photoelectrochemical water oxidation in only 6 min relative to conventional thermal annealing in a traditional muffle furnace (FA) that needs a much longer time, 300 min. This technique can apply equally effectively to bare as well as modified BiVO4 by Mo-doping, heterojunction formation with WO3, and an oxygen evolution co-catalyst. Relative to FA, HMA forms BiVO4 films of smaller feature sizes, higher porosity, and increased three dimensional roughness, which decrease the diffusion distance of holes to the surface and thereby increase mainly the bulk charge separation efficiency (eta(bulk...
Photoelectrochemical (PEC) water splitting, which is a type of artificial photosynthesis, is a susta...
Abundant materials, cheap synthesis methods and high efficiencies are required for photoelectrodes m...
Bismuth vanadate (BiVO4) is a promising semiconductor material for the production of solar fuels via...
Hybrid microwave annealing (HMA) is proposed as an alternative to conventional thermal annealing (CT...
ConspectusHydrogen is regarded as an ideal energy carrier for the hydrogen economy that could replac...
Hybrid microwave annealing (HMA) is proposed as an alternative to conventional thermal annealing (CT...
Photoelectrochemical (PEC) cells for solar???energy conversion have received immense interest as a p...
Triclinic iron vanadate (n-type FeVO4) thin films were fabricated for the first time by spray pyroly...
Solar water splitting has attracted significant attention due to its potential of converting solar t...
While BiVO4 is a promising photoanode for solar-driven photoelectrochemical (PEC) water splitting, f...
Bismuth vanadate (BiVO4) is a promising semiconductor material for the production of solar fuels via...
To improve the photoelectrochemical (PEC) performance of BiVO4, three different modifications (dopin...
Monoclinic BiVO4 is recognized as a promising photoanode for water oxidation, but its relatively wid...
In this paper, the synergistic effect of porosity and gradient of Mo doping in BiVO4 photoanodes for...
High-temperature annealing above 700 ??C improves the activity of photoelectrochemical water oxidati...
Photoelectrochemical (PEC) water splitting, which is a type of artificial photosynthesis, is a susta...
Abundant materials, cheap synthesis methods and high efficiencies are required for photoelectrodes m...
Bismuth vanadate (BiVO4) is a promising semiconductor material for the production of solar fuels via...
Hybrid microwave annealing (HMA) is proposed as an alternative to conventional thermal annealing (CT...
ConspectusHydrogen is regarded as an ideal energy carrier for the hydrogen economy that could replac...
Hybrid microwave annealing (HMA) is proposed as an alternative to conventional thermal annealing (CT...
Photoelectrochemical (PEC) cells for solar???energy conversion have received immense interest as a p...
Triclinic iron vanadate (n-type FeVO4) thin films were fabricated for the first time by spray pyroly...
Solar water splitting has attracted significant attention due to its potential of converting solar t...
While BiVO4 is a promising photoanode for solar-driven photoelectrochemical (PEC) water splitting, f...
Bismuth vanadate (BiVO4) is a promising semiconductor material for the production of solar fuels via...
To improve the photoelectrochemical (PEC) performance of BiVO4, three different modifications (dopin...
Monoclinic BiVO4 is recognized as a promising photoanode for water oxidation, but its relatively wid...
In this paper, the synergistic effect of porosity and gradient of Mo doping in BiVO4 photoanodes for...
High-temperature annealing above 700 ??C improves the activity of photoelectrochemical water oxidati...
Photoelectrochemical (PEC) water splitting, which is a type of artificial photosynthesis, is a susta...
Abundant materials, cheap synthesis methods and high efficiencies are required for photoelectrodes m...
Bismuth vanadate (BiVO4) is a promising semiconductor material for the production of solar fuels via...