Diverse morphologies of multidimensional hierarchical single-crystalline ZnO nanoarchitectures including nanoflowers, nanobelts, and nanowires are obtained by use of a simple thermal evaporation and vapour-phase transport deposition technique by placing Au-coated silicon substrates in different positions inside a furnace at process temperatures as low as 550 °C. The nucleation and growth of ZnO nanostructures are governed by the vapour–solid mechanism, as opposed to the commonly reported vapour–liquid–solid mechanism, when gold is used in the process. The morphological, structural, compositional and optical properties of the synthesized ZnO nanostructures can be effectively tailored by means of the experimental parameters, and these propert...
We investigated a modified thermal evaporation method in the growth process of ZnO nanowires. ZnO na...
ZnO structures were grown on Au-catalyzed Si substrate with various distances between the source and...
Well-aligned ZnO nanowires were successfully synthesized on a silicon substrate at the low temperatu...
One-dimensional ZnO nanostructures were successfully synthesized on single-crystal silicon substrate...
One-dimensional ZnO nanostructures were successfully synthesized on single-crystal silicon substrate...
International audienceZnO nanostructures were grown on Au-catalyzed Si silicon substrates using vapo...
International audienceZnO nanostructures were grown on Au-catalyzed Si silicon substrates using vapo...
International audienceZnO nanostructures were grown on Au-catalyzed Si silicon substrates using vapo...
Vertically well-aligned ZnO nanoridge, nanorod, nanorod-nanowall junction, and nanotip arrays have b...
ZnO nanowire arrays were synthesized on zinc foil by a simple thermal evaporation process at relativ...
ZnO nanowire arrays were synthesized on zinc foil by a simple thermal evaporation process at relativ...
ZnO nanowire arrays were synthesized on zinc foil by a simple thermal evaporation process at relativ...
ZnO semiconductor nanostructures have been synthesized by thermal evaporation of mixture of ZnO and ...
ZnO nanostructures including nanorod and nanotower were synthesized on Ag nanoisland coated Si subst...
Tailor-made nanostructured ZnO cages have been catalytically grown on Au and Pt films covering silic...
We investigated a modified thermal evaporation method in the growth process of ZnO nanowires. ZnO na...
ZnO structures were grown on Au-catalyzed Si substrate with various distances between the source and...
Well-aligned ZnO nanowires were successfully synthesized on a silicon substrate at the low temperatu...
One-dimensional ZnO nanostructures were successfully synthesized on single-crystal silicon substrate...
One-dimensional ZnO nanostructures were successfully synthesized on single-crystal silicon substrate...
International audienceZnO nanostructures were grown on Au-catalyzed Si silicon substrates using vapo...
International audienceZnO nanostructures were grown on Au-catalyzed Si silicon substrates using vapo...
International audienceZnO nanostructures were grown on Au-catalyzed Si silicon substrates using vapo...
Vertically well-aligned ZnO nanoridge, nanorod, nanorod-nanowall junction, and nanotip arrays have b...
ZnO nanowire arrays were synthesized on zinc foil by a simple thermal evaporation process at relativ...
ZnO nanowire arrays were synthesized on zinc foil by a simple thermal evaporation process at relativ...
ZnO nanowire arrays were synthesized on zinc foil by a simple thermal evaporation process at relativ...
ZnO semiconductor nanostructures have been synthesized by thermal evaporation of mixture of ZnO and ...
ZnO nanostructures including nanorod and nanotower were synthesized on Ag nanoisland coated Si subst...
Tailor-made nanostructured ZnO cages have been catalytically grown on Au and Pt films covering silic...
We investigated a modified thermal evaporation method in the growth process of ZnO nanowires. ZnO na...
ZnO structures were grown on Au-catalyzed Si substrate with various distances between the source and...
Well-aligned ZnO nanowires were successfully synthesized on a silicon substrate at the low temperatu...