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Effects of Na Doping on Structural, Optical, and Electronic Properties of ZnO Thin Films Fabricated by Sol–Gel Technique

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Undoped and Na-doped ZnO thin films were fabricated by sol–gel technique on quartz glass substrates and annealed at 500°C for 1 h. The structural properties of the films were characterized using… Click to show full abstract

Undoped and Na-doped ZnO thin films were fabricated by sol–gel technique on quartz glass substrates and annealed at 500°C for 1 h. The structural properties of the films were characterized using x-ray diffraction analysis, which revealed hexagonal wurtzite structure with no peaks corresponding to Na2O or other Na phases being found. Surface morphology observations by scanning electron microscopy revealed that the crystallite size and topographical properties of the ZnO films were influenced by the Na doping concentration. X-ray photoelectron spectra revealed presence of Na+ in ZnO regime. The transmittance spectra indicated that the average transmittance of Na-doped ZnO film was above 80% in the visible range, superior to that of the undoped film. There was a blue-shift in the ultraviolet absorption edge with increase of the Na content. Photoluminescence spectra illustrated two peaks, corresponding to ultraviolet near-band-edge and visible emission.

Keywords: thin films; gel technique; films fabricated; fabricated sol; zno thin; sol gel

Journal Title: Journal of Electronic Materials
Year Published: 2018

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