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High optimization of crystallization experimental conditions of ZnO nano thin films prepared by spray pyrolysis technique for optoelectronic applications

L. Bourasa, A. Beggasa,*, D. Sahnouneb, M. Ghougalia, R. Ferhata

a LEVRES Laboratory, University of El Oued, 39000 El Oued, Algeria
b Plateau technique en analyses physico-chimiques PTAPC.CRAPC-Biskra 07000 Algeria

* Corresponding Author: email

Chalcogenide Letters 2024, 21(11), 917-926. https://doi.org/10.15251/CL.2024.2111.917

Abstract

The present study intends to provide the impact of nitric acid on the structural and optical characteristics of thin films of ZnO. The latter was grown on substrates of glass via spray pyrolysis with 400°C, using Zinc acetate aqueous solution acidified by different amounts of nitric acid to obtain a pH ranging from 6.8 to 2.9. The film properties were analyzed as a function of pH. In the light of the XRD analysis, all the films have a preferential direction along the (002) plane. Depending on pH conditions, the crystal size increased from 32.38 to 37.4 nm, with a decrease in pH from 6.8 to 2.9, according to the X-ray diffraction analysis. It can be observed from the transmission spectra of the 300-900 nm wavelengths range that the optical transmission of the films is on average above 90%, and band gap values were found in the range 3.28 - 3.19 eV. The ZnO film’s FTIR spectrum in the wavenumber range (400-4000 cm-1 ) displayed a wide band between 400 and 552 cm-1 , which was assigned to the Zn-O stretching mode.

Keywords

ZnO films, pH, Spray pyrolysis deposition, Optical and structural properties

Cite This Article

APA Style
Bouras, L., Beggas, A., Sahnoune, D., Ghougali, M., Ferhat, R. (2024). High optimization of crystallization experimental conditions of ZnO nano thin films prepared by spray pyrolysis technique for optoelectronic applications. Chalcogenide Letters, 21(11), 917–926. https://doi.org/10.15251/CL.2024.2111.917
Vancouver Style
Bouras L, Beggas A, Sahnoune D, Ghougali M, Ferhat R. High optimization of crystallization experimental conditions of ZnO nano thin films prepared by spray pyrolysis technique for optoelectronic applications. Chalcogenide Letters. 2024;21(11):917–926. https://doi.org/10.15251/CL.2024.2111.917
IEEE Style
L. Bouras, A. Beggas, D. Sahnoune, M. Ghougali, and R. Ferhat, “High optimization of crystallization experimental conditions of ZnO nano thin films prepared by spray pyrolysis technique for optoelectronic applications,” Chalcogenide Letters, vol. 21, no. 11, pp. 917–926, 2024. https://doi.org/10.15251/CL.2024.2111.917



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