The thermal annealing of zinc precursors to form suitable seed layers for the growth of ZnO nanowires is common. However, the process is relatively long and involves high temperatures which limit substrate choice. In this study the use of a low temperature, ultra-violet (UV) exposure is demonstrated for photodecomposition of zinc acetate precursors to form suitable seed layers. Comparisons are made between ZnO nanowire growth performed on seed layers produced through thermal annealing and exposure to UV. The dependence of growth density and nanowire diameter on UV exposure time is investigated. Growth quality is confirmed with energy dispersive x-ray (EDX) and x-ray diffraction analyses. The chemical composition of the exposed layers is inv...
PhDThis project explores the effect of materials processing on the optical, morphological, and elect...
Vertically aligned zinc oxide nanowires (NWs) were synthesized by two different techniques: chemical...
ZnO is a direct wide bandgap semiconductor crystallizing in the wurtzite structure with a series of ...
Vertically aligned zinc oxide (ZnO) nanowires were hydrothermally synthesized on a glass substrate w...
Zinc oxide nano-wires (ZnO NWs) are synthesized reproducibly with high yield via a low temperature h...
AbstractA solution growth approach for zinc oxide (ZnO) nanowires is highly appealing because of the...
Zinc Oxide (ZnO) nanostructures with their significant properties have various application in optoel...
International audienceZnO nanowires were grown on sapphire substrates using metalorganic chemical va...
International audienceZnO nanowires were grown on sapphire substrates using metalorganic chemical va...
International audienceZnO nanowires were grown on sapphire substrates using metalorganic chemical va...
Semiconducting nanowires (NWs) offer exciting prospects for a wide range of technological applicatio...
The objectives of this study are to grow and characterize the structural, optical, and electrical pr...
Zinc oxide (ZnO) nanorods (NRs) have been investigated as a function of different growth temperature...
AbstractZinc oxide (ZnO) nanowire (NW) arrays were grown on Si (100) substrate by metal-organic chem...
Elongated wire-like Zinc oxide, nanocombs and nanocrystals have been successfully synthesized on the...
PhDThis project explores the effect of materials processing on the optical, morphological, and elect...
Vertically aligned zinc oxide nanowires (NWs) were synthesized by two different techniques: chemical...
ZnO is a direct wide bandgap semiconductor crystallizing in the wurtzite structure with a series of ...
Vertically aligned zinc oxide (ZnO) nanowires were hydrothermally synthesized on a glass substrate w...
Zinc oxide nano-wires (ZnO NWs) are synthesized reproducibly with high yield via a low temperature h...
AbstractA solution growth approach for zinc oxide (ZnO) nanowires is highly appealing because of the...
Zinc Oxide (ZnO) nanostructures with their significant properties have various application in optoel...
International audienceZnO nanowires were grown on sapphire substrates using metalorganic chemical va...
International audienceZnO nanowires were grown on sapphire substrates using metalorganic chemical va...
International audienceZnO nanowires were grown on sapphire substrates using metalorganic chemical va...
Semiconducting nanowires (NWs) offer exciting prospects for a wide range of technological applicatio...
The objectives of this study are to grow and characterize the structural, optical, and electrical pr...
Zinc oxide (ZnO) nanorods (NRs) have been investigated as a function of different growth temperature...
AbstractZinc oxide (ZnO) nanowire (NW) arrays were grown on Si (100) substrate by metal-organic chem...
Elongated wire-like Zinc oxide, nanocombs and nanocrystals have been successfully synthesized on the...
PhDThis project explores the effect of materials processing on the optical, morphological, and elect...
Vertically aligned zinc oxide nanowires (NWs) were synthesized by two different techniques: chemical...
ZnO is a direct wide bandgap semiconductor crystallizing in the wurtzite structure with a series of ...