In this investigation, a facile method to synthesize 1-D ZnO nanorod having different aspect ratio by varying the hydrothermal temperature was demonstrated. The hydrothermal reaction temperatures were optimized to obtain high aspect ratio ZnO nanorods with well-defined 1-D structures. The aspect ratio depended electron transport properties, charge recombination, chemical capacitance, life-time and charge diffusion length of 1-D ZnO nanostructures were investigated. It was observed a clear correlation between the aspect ratio and the electron transport properties of ZnO nanorods. The highest aspect ratio of 7.6 was obtained for the ZnO nanorods synthesized at 100–120 °C and was found to have the highest electron transport properties. It was ...
In this work, ZnO nanorods are obtained through a facile hydrothermal route. The structure and morph...
By using a low cost, low-temperature hydrothermal approach, well-aligned ZnO nanorods with high aspe...
Despite its large band gap, ZnO has wide applicability in many fields ranging from gas sensors to so...
In this investigation, a facile method to synthesize 1-D ZnO nanorod having different aspect ratio b...
We report a new direct fabrication of the ZnO nanorods (NR) by hydrothermal method, in which the pre...
One-dimensional ZnO nanorods (ZnO NRs) have the edge over other nanostructures due to their unique p...
Nanostructure of semiconductor materials zinc oxide (ZnO) is widely used in fabrication of solar cel...
Hexagonal oriented and dumbbell shaped ZnO nanorods were prepared through hydrothermal method on go...
Hexagonal oriented and dumbbell shaped ZnO nanorods were prepared through hydrothermal method on gol...
Hexagonal ZnO nanorods have been prepared by a simple low-temperature hydrothermal method using ZnCl...
ZnO nanorods were grown on bare or SiO2-coated Si wafers by the hydrothermal method. The ZnO nanorod...
Hexagonal ZnO nanorods have been prepared by a simple low-temperature hydrothermal method using ZnCl...
Hexagonal ZnO nanorods have been prepared by a simple low-temperature hydrothermal method using ZnCl...
Hexagonal ZnO nanorods have been prepared by a simple low-temperature hydrothermal method using ZnCl...
Orientation of zinc oxide nanorods has a vital role in the performance of nanoscaled-based optoelect...
In this work, ZnO nanorods are obtained through a facile hydrothermal route. The structure and morph...
By using a low cost, low-temperature hydrothermal approach, well-aligned ZnO nanorods with high aspe...
Despite its large band gap, ZnO has wide applicability in many fields ranging from gas sensors to so...
In this investigation, a facile method to synthesize 1-D ZnO nanorod having different aspect ratio b...
We report a new direct fabrication of the ZnO nanorods (NR) by hydrothermal method, in which the pre...
One-dimensional ZnO nanorods (ZnO NRs) have the edge over other nanostructures due to their unique p...
Nanostructure of semiconductor materials zinc oxide (ZnO) is widely used in fabrication of solar cel...
Hexagonal oriented and dumbbell shaped ZnO nanorods were prepared through hydrothermal method on go...
Hexagonal oriented and dumbbell shaped ZnO nanorods were prepared through hydrothermal method on gol...
Hexagonal ZnO nanorods have been prepared by a simple low-temperature hydrothermal method using ZnCl...
ZnO nanorods were grown on bare or SiO2-coated Si wafers by the hydrothermal method. The ZnO nanorod...
Hexagonal ZnO nanorods have been prepared by a simple low-temperature hydrothermal method using ZnCl...
Hexagonal ZnO nanorods have been prepared by a simple low-temperature hydrothermal method using ZnCl...
Hexagonal ZnO nanorods have been prepared by a simple low-temperature hydrothermal method using ZnCl...
Orientation of zinc oxide nanorods has a vital role in the performance of nanoscaled-based optoelect...
In this work, ZnO nanorods are obtained through a facile hydrothermal route. The structure and morph...
By using a low cost, low-temperature hydrothermal approach, well-aligned ZnO nanorods with high aspe...
Despite its large band gap, ZnO has wide applicability in many fields ranging from gas sensors to so...