We report the synthesis of zinc oxide (ZnO) nano-leaves and nano-rods under high and extremely high alkaline experimental conditions, via a simple and low-temperature method. By performing transmission electron microscopy it is found that the nano-leaves and nano-rods grow along the (001) direction. Anisotropic, i.e., hkl-dependent line-shape broadening is observed in ZnO powder diffraction patterns. Rietveld analysis using Fullprof with model for handling the anisotropic size-like broadening is performed on these diffraction patterns. The refinement showed that ZnO powders belong to the hexagonal ZnS structure type with space group P63mc, and confirmed that the nano-leaves and nano-rods are oriented along the (001) direction. Results of vi...
This article reports the controlled size of ZnO nanoparticles synthesized via simple aqueous chemica...
ZnO nanoflowers were successfully synthesized by a simple low-temperature route in the absence of su...
In this study, the ambient condition for the as-coated seed layer (SL) annealing at 350 °C is varied...
We report the synthesis of zinc oxide (ZnO) nano-leaves and nano-rods under high and extremely high ...
In this work, zinc oxide (ZnO) nanorods were obtained by a simple chemical precipitation method in t...
Zinc oxide (ZnO) nanostructures of different morphology are synthesized by simple soft-chemical appr...
We investigated the morphology and properties of ZnO nanorods synthesized at 90 °C from the solution...
This research article provides a pathway of controlled growth of ZnO nano-rods, -flowers, -needles o...
We demonstrate a promising route to fabricate large scale hexagonally patterned, vertically aligned ...
We report on the effect of the morphological modification on optical properties and polarization of ...
ZnO nanoflowers were synthesized by the hydrothermal process at an optimized growth temperature of 2...
We report the controlled variation of luminescence of ZnO nanostructures from intense ultraviolet to...
In this paper we will give an overview of the status of catalytic growth and of low-temperature chem...
We synthesized vertically aligned nail-shaped ZnO nanocrystal arrays on silicon substrates via a com...
We report the controlled variation of luminescence of ZnO nanostructures from intense ultraviolet to...
This article reports the controlled size of ZnO nanoparticles synthesized via simple aqueous chemica...
ZnO nanoflowers were successfully synthesized by a simple low-temperature route in the absence of su...
In this study, the ambient condition for the as-coated seed layer (SL) annealing at 350 °C is varied...
We report the synthesis of zinc oxide (ZnO) nano-leaves and nano-rods under high and extremely high ...
In this work, zinc oxide (ZnO) nanorods were obtained by a simple chemical precipitation method in t...
Zinc oxide (ZnO) nanostructures of different morphology are synthesized by simple soft-chemical appr...
We investigated the morphology and properties of ZnO nanorods synthesized at 90 °C from the solution...
This research article provides a pathway of controlled growth of ZnO nano-rods, -flowers, -needles o...
We demonstrate a promising route to fabricate large scale hexagonally patterned, vertically aligned ...
We report on the effect of the morphological modification on optical properties and polarization of ...
ZnO nanoflowers were synthesized by the hydrothermal process at an optimized growth temperature of 2...
We report the controlled variation of luminescence of ZnO nanostructures from intense ultraviolet to...
In this paper we will give an overview of the status of catalytic growth and of low-temperature chem...
We synthesized vertically aligned nail-shaped ZnO nanocrystal arrays on silicon substrates via a com...
We report the controlled variation of luminescence of ZnO nanostructures from intense ultraviolet to...
This article reports the controlled size of ZnO nanoparticles synthesized via simple aqueous chemica...
ZnO nanoflowers were successfully synthesized by a simple low-temperature route in the absence of su...
In this study, the ambient condition for the as-coated seed layer (SL) annealing at 350 °C is varied...