The commercialization of solar fuel devices requires the development of novel engineered photoelectrodes for water splitting applications which are based on redundant, cheap, and environmentally friendly materials. In the current study, a combination of titanium dioxide TiO2 and zinc oxide ZnO onto nanotextured silicon is utilized for a composite electrode with the aim to overcome the individual shortcomings of the respective materials. The properties of conformal coverage of TiO2 and ZnO layers are designed on the atomic scale by the atomic layer deposition technique. The resulting photoanode shows not only promising stability but also nine times higher photocurrents than an equivalent photoanode with a pure TiO2 encapsulation onto the...
Photocatalysis is proven to be the most efficient and environmentally friendly method for the degrad...
Efficient solar driven photoelectrochemical (PEC) response by enhancing charge separation has attrac...
ZnO/TiO2 core/shell heterojunction arrays were fabricated via the atomic layer deposition (ALD) of v...
The commercialization of solar fuel devices requires the development of novel engineered photoelectr...
The commercialization of solar fuel devices requires the development of novel engineered photoelectr...
The utilization of solar radiation to trigger photoelectrochemical (PEC) water splitting has gained ...
Solar driven water splitting system is a key target for the development of sustainable hydrogen econ...
Photocatalytic water splitting represents an emerging technology well positioned to satisfy the grow...
Increasing energy consumption is one of the greatest challenges the humankind is facing in the 21st ...
There is an alarming increase of energy issues due to significant fossil fuel consumption. Some prog...
In this study, hybrid ZnO-TiO2 nanostructures have been synthesised by means of a simple electrochem...
The effects of using composite semiconductor films on the efficiency and stability of dye-sensitized...
In solar energy harvesting using solar cells and photocatalysts, the photoexcitation of electrons an...
We present the synthesis of a unique vertically aligned ZnO-TiO<sub>2</sub> core–shell nanowires (NW...
In solar energy harvesting using solar cells and photocatalysts, the photoexcitation of electrons an...
Photocatalysis is proven to be the most efficient and environmentally friendly method for the degrad...
Efficient solar driven photoelectrochemical (PEC) response by enhancing charge separation has attrac...
ZnO/TiO2 core/shell heterojunction arrays were fabricated via the atomic layer deposition (ALD) of v...
The commercialization of solar fuel devices requires the development of novel engineered photoelectr...
The commercialization of solar fuel devices requires the development of novel engineered photoelectr...
The utilization of solar radiation to trigger photoelectrochemical (PEC) water splitting has gained ...
Solar driven water splitting system is a key target for the development of sustainable hydrogen econ...
Photocatalytic water splitting represents an emerging technology well positioned to satisfy the grow...
Increasing energy consumption is one of the greatest challenges the humankind is facing in the 21st ...
There is an alarming increase of energy issues due to significant fossil fuel consumption. Some prog...
In this study, hybrid ZnO-TiO2 nanostructures have been synthesised by means of a simple electrochem...
The effects of using composite semiconductor films on the efficiency and stability of dye-sensitized...
In solar energy harvesting using solar cells and photocatalysts, the photoexcitation of electrons an...
We present the synthesis of a unique vertically aligned ZnO-TiO<sub>2</sub> core–shell nanowires (NW...
In solar energy harvesting using solar cells and photocatalysts, the photoexcitation of electrons an...
Photocatalysis is proven to be the most efficient and environmentally friendly method for the degrad...
Efficient solar driven photoelectrochemical (PEC) response by enhancing charge separation has attrac...
ZnO/TiO2 core/shell heterojunction arrays were fabricated via the atomic layer deposition (ALD) of v...