Nanostructure Zinc Oxide (ZnO) is widely applied in various fields such as optoelectronics, sensors, transducers and biomedical sciences. Nowadays, there are many methods that can be used to produce ZnO thin film such as electrochemical deposition. This method is a process of converting or forming an oxide layer on the metal surface. The purpose of this research is to study the effect of water temperature on the morphology of ZnO during the electrochemical deposition process. ZnO nanostructures obtained after electrochemical deposition process is carried out at different water temperatures and a constant current density. Electrochemical deposition process was carried out when the water temperature reached 60, 65, 70, 75 and 80oC. During the...
[EN] The growth kinetics of ZnO nanorods were studied by means of an electrochemical deposition proc...
The temperature-dependent nucleation and growth mechanism of electrodeposited zinc oxide (ZnO) thin ...
Zinc oxide (ZnO) nanostructures were deposited under potentiostatic control on indium tin oxide coat...
Nanostructure Zinc Oxide (ZnO) is widely applied in various fields such as optoelectronics, sensors,...
In this work, the electrochemical deposition of zinc oxide (ZnO) thin film on indium tin oxide (ITO)...
ZnO thin layer has a broad potential application in electronic and optoelectronic devices. In this s...
Among semiconductors, zinc oxide (ZnO) has received great attention due to its wide band-gap and hig...
Zinc oxide (ZnO) nanorods (NRs) have been investigated as a function of different growth temperature...
Nanostructured zinc oxide synthesized using an easy and low temperature chemical bath deposition met...
In this paper, zinc oxide (ZnO) nanowires were synthesized by thermal oxidation method of zinc scrap...
Electrodeposition from ZnCl2 aqueous solution was performed to grow ZnO thin films on the surface of...
ZnO nanostructures have great promise in a wide range of applications such as sensors, optoelectroni...
A thin layer of zinc oxide (ZnO) film was predeposited onto indium tin oxide (ITO) glass via dip-coa...
The Nano structured zinc oxide (ZnO) materials in thin film have been achieved using electrochemical...
Zinc oxide (ZnO) is an important semiconductive material due to its potential applications, such as ...
[EN] The growth kinetics of ZnO nanorods were studied by means of an electrochemical deposition proc...
The temperature-dependent nucleation and growth mechanism of electrodeposited zinc oxide (ZnO) thin ...
Zinc oxide (ZnO) nanostructures were deposited under potentiostatic control on indium tin oxide coat...
Nanostructure Zinc Oxide (ZnO) is widely applied in various fields such as optoelectronics, sensors,...
In this work, the electrochemical deposition of zinc oxide (ZnO) thin film on indium tin oxide (ITO)...
ZnO thin layer has a broad potential application in electronic and optoelectronic devices. In this s...
Among semiconductors, zinc oxide (ZnO) has received great attention due to its wide band-gap and hig...
Zinc oxide (ZnO) nanorods (NRs) have been investigated as a function of different growth temperature...
Nanostructured zinc oxide synthesized using an easy and low temperature chemical bath deposition met...
In this paper, zinc oxide (ZnO) nanowires were synthesized by thermal oxidation method of zinc scrap...
Electrodeposition from ZnCl2 aqueous solution was performed to grow ZnO thin films on the surface of...
ZnO nanostructures have great promise in a wide range of applications such as sensors, optoelectroni...
A thin layer of zinc oxide (ZnO) film was predeposited onto indium tin oxide (ITO) glass via dip-coa...
The Nano structured zinc oxide (ZnO) materials in thin film have been achieved using electrochemical...
Zinc oxide (ZnO) is an important semiconductive material due to its potential applications, such as ...
[EN] The growth kinetics of ZnO nanorods were studied by means of an electrochemical deposition proc...
The temperature-dependent nucleation and growth mechanism of electrodeposited zinc oxide (ZnO) thin ...
Zinc oxide (ZnO) nanostructures were deposited under potentiostatic control on indium tin oxide coat...