Novel ZnO nanorod films by chemical solution deposition for planar device applications.

@article{Singh2013NovelZN,
  title={Novel ZnO nanorod films by chemical solution deposition for planar device applications.},
  author={D. Singh and Anand Arcot Narasimulu and Luis Garcia-Gancedo and Y. Q. Fu and Navneet Soin and Guosheng Shao and J. K. Luo},
  journal={Nanotechnology},
  year={2013},
  volume={24 27},
  pages={
          275601
        }
}
Smooth and continuous ZnO films consisting of densely packed ZnO nanorods (NRs), which can be used for electronic device fabrication, were synthesized using a hydro-thermo-chemical solution deposition method. Such devices would have the novelty of high performance, benefiting from the inherited unique properties of the nanomaterials, and can be fabricated on these smooth films using a conventional, low cost planar process. Photoluminescence measurements showed that the NR films have much… 
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References

SHOWING 1-10 OF 69 REFERENCES
Zinc oxide nanorod based photonic devices: recent progress in growth, light emitting diodes and lasers.
TLDR
Light emitting diodes based on n-ZnO nanorods combined with different technologies (hybrid technologies) are suggested and the recent electrical, as well as electro-optical, characteristics of these LEDs are shown and discussed.
Vertically aligned smooth ZnO nanorod films for planar device applications
The growth of smooth and continuous zinc oxide (ZnO) films, consisting of densely packed vertical ZnO nanorods with (002) crystal orientation on silicon substrates has been achieved in this work by a
Sequential Nucleation and Growth of Complex Nanostructured Films
Nanostructured films with controlled architectures are desirable for many applications in optics, electronics, biology, medicine, and energy/chemical conversions. Low-temperature, aqueous chemical
Growth of vertically aligned ZnO nanorods using textured ZnO films
A hydrothermal method to grow vertical-aligned ZnO nanorod arrays on ZnO films obtained by atomic layer deposition (ALD) is presented. The growth of ZnO nanorods is studied as function of the
Density-controlled growth of aligned ZnO nanowire arrays by seedless chemical approach on smooth surfaces
A novel ZnO seedless chemical approach for density-controlled growth of ZnO nanowire (NW) arrays has been developed. The density of ZnO NWs is controlled by changing the precursor concentration.
Growth of Arrayed Nanorods and Nanowires of ZnO from Aqueous Solutions
A novel approach to the rational fabrication of smart and functional metal oxide particulate thin films and coatings is demonstrated on the growth of ZnO nanowires and oriented nanorod arrays. The
Preferential growth of ZnO thin films by the atomic layer deposition technique.
TLDR
In this work, diethyl zinc and deionized water were used as a zinc source and oxygen source and the results demonstrated that (10.0) dominant ZnO thin films were grown in the temperature range of 155-220 °C, while the c-axis crystal growth of these films was greatly suppressed.
Electrochemical Fabrication of CdS Nanowire Arrays in Porous Anodic Aluminum Oxide Templates
A technique is described for fabricating arrays of uniform CdS nanowires with lengths up to 1 μm and diameters as small as 9 nm by electrochemically depositing the semiconductor directly into the
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