Affiliation:
1. National Centre for Nanoscience and Nanotechnology, University of Madras, Maraimalai Campus, Chennai, India
Abstract
In the present work, we studied the morphological aspects, electrical
transport and optical properties of pure and lithium ion doped semiconducting
ZnO nanostructures successfully prepared by a co-precipitation method. The
effect of lithium doping and various morphologies on the structural,
electrical and optical properties of these nanostructures were investigated.
The X-ray diffraction (XRD) pattern demonstrated that the Li doped ZnO
nanostructures exhibits the hexagonal wurtzite structure. A slight change in
the 101 peak position was detected among the samples with various
morphologies. The UV-Vis diffused reflectance spectroscopic (DRS) studies
showed that the band gap increases with Li doping, due to the Burstein-Moss
band filling effect. Photo- luminescence (PL) studies confirm that the Li
incorporation into ZnO material can induce oxygen enrichment of ZnO surface
that leads to increase the cyan emission. This material could be used in
light emitting diodes in nanoscale optoelectronic devices.
Publisher
National Library of Serbia
Cited by
34 articles.
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