Zinc oxide nanowire photoanodes are chemically stabilized by conformal growth of an ultrathin shell of titania through atomic layer deposition, permitting their stable operation for water splitting in a strongly alkaline solution. Because of the passivation of zinc oxide surface charge traps by titania coating, core/shell nanowire arrays supply a photocurrent density of 0.5 mA/cm<sup>2</sup> under simulated AM1.5G sunlight at the thermodynamic oxygen evolving potential, demonstrating 25% higher photoelectrochemical water splitting activity compared to as-grown zinc oxide wires. By thermally annealing the zinc oxide wire arrays prior to surface passivation, we further increase the photocurrent density to 0.7 mA/cm<sup>2</sup>the highest rep...
A fast and low-cost sol-gel synthesis used to deposit a shell of TiO 2 anatase onto an array of vert...
We report on a simple, fast and low-cost synthesis procedure for the complete covering of zinc oxide...
The commercialization of solar fuel devices requires the development of novel engineered photoelectr...
Photocatalytic water splitting represents an emerging technology well positioned to satisfy the grow...
Zinc oxide is regarded as an attractive semiconductor alternative to the most commonly used silicon ...
A fast and low-cost sol–gel synthesis used to deposit a shell of TiO<sub>2</sub> anatase onto an arr...
A chemical conversion of zinc oxide to zinc sulfide is adapted to create ZnS shell over single cryst...
Photocatalysis is proven to be the most efficient and environmentally friendly method for the degrad...
Photo-electrochemical (PEC) water-splitting offers a promising way for clean, low-cost and environme...
A fast and low-cost sol-gel synthesis used to deposit a shell of TiO 2 anatase onto an array of vert...
The design and synthesis of materials that absorb visible light and create fuel to store solar energ...
Vertically aligned zinc oxide (ZnO) nanowires were hydrothermally synthesized on a glass substrate w...
A photoanode based on ZnO nanotetrapods, which feature good vectorial electron transport and network...
The utilization of solar radiation to trigger photoelectrochemical (PEC) water splitting has gained ...
International audiencePhotocatalysis is proven to be the most efficient and environmentally friendly...
A fast and low-cost sol-gel synthesis used to deposit a shell of TiO 2 anatase onto an array of vert...
We report on a simple, fast and low-cost synthesis procedure for the complete covering of zinc oxide...
The commercialization of solar fuel devices requires the development of novel engineered photoelectr...
Photocatalytic water splitting represents an emerging technology well positioned to satisfy the grow...
Zinc oxide is regarded as an attractive semiconductor alternative to the most commonly used silicon ...
A fast and low-cost sol–gel synthesis used to deposit a shell of TiO<sub>2</sub> anatase onto an arr...
A chemical conversion of zinc oxide to zinc sulfide is adapted to create ZnS shell over single cryst...
Photocatalysis is proven to be the most efficient and environmentally friendly method for the degrad...
Photo-electrochemical (PEC) water-splitting offers a promising way for clean, low-cost and environme...
A fast and low-cost sol-gel synthesis used to deposit a shell of TiO 2 anatase onto an array of vert...
The design and synthesis of materials that absorb visible light and create fuel to store solar energ...
Vertically aligned zinc oxide (ZnO) nanowires were hydrothermally synthesized on a glass substrate w...
A photoanode based on ZnO nanotetrapods, which feature good vectorial electron transport and network...
The utilization of solar radiation to trigger photoelectrochemical (PEC) water splitting has gained ...
International audiencePhotocatalysis is proven to be the most efficient and environmentally friendly...
A fast and low-cost sol-gel synthesis used to deposit a shell of TiO 2 anatase onto an array of vert...
We report on a simple, fast and low-cost synthesis procedure for the complete covering of zinc oxide...
The commercialization of solar fuel devices requires the development of novel engineered photoelectr...