Growing parameters and quality of ZnO seed-layer film. Part 2

Main Article Content

A. V. Bogdan
A. T. Orlov
V. A. Ulianova

Abstract

The results of deposition of ZnO seed-layer on the silicon substrate, Al-coated silicon and Al-coated lithium niobate substrates by sol-gel method at sol concentration of 0,8 and 1,2 M were introduced. It was shown that film roughness and grain size had increased with increasing of the sol concentration. The new results of synthesis of ZnO vertically oriented nanorods on the obtained thin seed-layer on the silicon substrate by hydrothermal method were presented. The diameter and density of synthesized ZnO nanorods were defined, the dependence between such geometrical parameters and seed-layer properties was shown. The obtained results could be applied for design of acoustic wave sensors and nanoscale devices.

References 5, figures 5

Article Details

How to Cite
Bogdan, A. V., Orlov, A. T., & Ulianova, V. A. (2013). Growing parameters and quality of ZnO seed-layer film. Part 2. Electronics and Communications, 18(2), 16–21. https://doi.org/10.20535/2312-1807.2013.18.2.173998
Section
Solid-state electronics

References

Bai Shr-Nan, Synthesis of ZnO nanowires by the hydrothermal method,using sol–gel prepared ZnO seed films / Shr-Nan Bai, Shich-Chuan Wu // J Mater Sci: Mater Electron. – 2011. – 22. – P. 339–344.

Bogdan A., Orlov A., Ulianova V., Growing parameters and quality of ZnO seed-layer film (Part 1) / A. Bogdan, A. Orlov, V. Ulianova // Electronics and Communications. –2012. – №6.

Ilican S., Preparation and characterization of ZnO thin filmsdeposited by sol-gel spin coating method / S. Ilican, Y. Caglar, M. Caglar // Journal of optoelectronics and advanced materials. – 2008. – Vol. 10, No. 10. – P. 2578 – 2583.

Lu Yicheng, Multifunctional Biosensor Based on ZnO Nanostructures / Lu Yicheng // Acoust. Soc. Am. – 2012. – Vol. 131, Issue 2, – P. 1667-1667.

Raoufi D., Raoufi T., The effect of heat treatment on the physical properties of sol-gel derived ZnO thin films / Davood Raoufi, Taha Raoufi // Applied surface science. – 2009. – Vol. 225. – P. 5812-5817.