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November 13-15, 2017 | Las Vegas, USA
14
th
International Conference and Exhibition on
Materials Science and Engineering
RRJOMS | Volume 5 | Issue 7 | November, 2017
Effect of Li concentration on the optical band gap of undoped and Li doped Zno nanorods
A. Elhichou, K. Eziane, A. Almaggoussi
and
A. El Hamidi
Université Cadi Ayyad, Morrocco
L
i doped and undoped Zinc oxide thin film by sol-gel method and spin coated on glass substrate, and the effect of doping on
structural, optical and stress properties have been investigated. X-ray diffraction analysis showed that all the films are polycrystalline
with hexagonal wurtzite structure. For a low amount of Li up to 12%, the texture coefficient increases with the Li amount ensuring an
improvement of the c-axis orientation and the crystallinity. The crystallite size seems slightly affected and ranged in the nanometer
range. Beyond this, Li amount value, the texture coefficient decreases drastically showing deterioration in the growth of ZnO along
c-axis. Scanning Electron Microscopy (SEM) images show that the morphology of films was highly influenced by Li incorporation.
For Li amount exceeding 12%, SEM images show the appearance of some cracks. The optical results revealed an improvement of the
total transmission when increasing the Li amount up to 12%. A linear decrease of band gap energy with the Li content was observed.
The stress was calculated and founded depending on the Li amount analogously to the band gap energy. Thus, the band gap energy
and the stress are correlated.
aelhichou@yahoo.frRes. Rev. J Mat. Sci. 2017, 5:7
DOI: 10.4172/2321-6212-C1-012