This paper reports the development of zinc oxide films electrodeposited at different potentials on tin-doped indium oxide substrates. The effect of deposition potential on ZnO microstructure, optical absorption, and photocatalytic activity for water splitting reaction were studied in detail. The films were potentiodynamically grown by applying different deposition potentials, such as - 0.7, - 0.8, and - 0.9 V at constant temperature (70 °C) for 30 min. The pH of precursor solution was maintained around 6 during the electrodeposition process. X-ray diffraction study revealed the hexagonal wurtzite crystal structure of the ZnO. The field emission scanning electron microscopy (FESEM) demonstrated a significant variation in the microstructure w...
Among the rich variety of photoelectrode materials, zinc oxide (ZnO) is one of the most promising ca...
A thin layer of zinc oxide (ZnO) film was predeposited onto indium tin oxide (ITO) glass via dip-coa...
The need to produce energy more efficiently is a more pressing with depleting supply and increasing ...
The present paper reports on the facile formation of ZnO nanorod photocatalyst electrodeposited on Z...
Despite its large band gap, ZnO has wide applicability in many fields ranging from gas sensors to so...
The urgent need for clean and storable energy drives many currently topical areas of materials resea...
High density and vertically aligned zinc oxide nanorod arrays (ZnO NRs) have been prepared directly ...
Despite its large band gap, ZnO has wide applicability in many fields ranging from gas sensors to so...
Abstract — ZnO nanostructure film was fabricated by wet chemical deposition method in this research....
Abstract. Nanostructured zinc oxide thin films (ZnO) were prepared on conducting glass support (SnO2...
To improve photoelectrochemical (PEC) water splitting, various ZnO nanostructures (nanorods (NRs), n...
Solar driven water splitting system is a key target for the development of sustainable hydrogen econ...
Among the rich variety of photoelectrode materials, zinc oxide (ZnO) is one of the most promising ca...
International audienceWe developed nanostructured photoanodes for photoelectrochemical (PEC) water s...
A thin layer of zinc oxide (ZnO) film was predeposited onto indium tin oxide (ITO) glass via dip-coa...
Among the rich variety of photoelectrode materials, zinc oxide (ZnO) is one of the most promising ca...
A thin layer of zinc oxide (ZnO) film was predeposited onto indium tin oxide (ITO) glass via dip-coa...
The need to produce energy more efficiently is a more pressing with depleting supply and increasing ...
The present paper reports on the facile formation of ZnO nanorod photocatalyst electrodeposited on Z...
Despite its large band gap, ZnO has wide applicability in many fields ranging from gas sensors to so...
The urgent need for clean and storable energy drives many currently topical areas of materials resea...
High density and vertically aligned zinc oxide nanorod arrays (ZnO NRs) have been prepared directly ...
Despite its large band gap, ZnO has wide applicability in many fields ranging from gas sensors to so...
Abstract — ZnO nanostructure film was fabricated by wet chemical deposition method in this research....
Abstract. Nanostructured zinc oxide thin films (ZnO) were prepared on conducting glass support (SnO2...
To improve photoelectrochemical (PEC) water splitting, various ZnO nanostructures (nanorods (NRs), n...
Solar driven water splitting system is a key target for the development of sustainable hydrogen econ...
Among the rich variety of photoelectrode materials, zinc oxide (ZnO) is one of the most promising ca...
International audienceWe developed nanostructured photoanodes for photoelectrochemical (PEC) water s...
A thin layer of zinc oxide (ZnO) film was predeposited onto indium tin oxide (ITO) glass via dip-coa...
Among the rich variety of photoelectrode materials, zinc oxide (ZnO) is one of the most promising ca...
A thin layer of zinc oxide (ZnO) film was predeposited onto indium tin oxide (ITO) glass via dip-coa...
The need to produce energy more efficiently is a more pressing with depleting supply and increasing ...