Effect of Deposition Time on the Properties of Cu<sub>x</sub>Zn<sub>y</sub>S Thin Films Synthesized by Ultrasonic Spray Pyrolysis

Author:

Kamli Kenza1,Hadef Zakaria1,Kamli Ouarda2,Chouial Baghdadi3,Aida Mohamed Salah4,Hadjoudja Hani1,Labiod Samir1

Affiliation:

1. University 20 Août 1955

2. University of Bejaia

3. University Badji Mokhtar

4. King Abdulaziz University

Abstract

Copper Zinc Sulfide CuxZnyS (CZS) thin films with different thicknesses were prepared by the ultrasonic spray pyrolysis method (USP). The influence of deposition time on the structural, morphological, and optical properties of the thin films has been investigated. XRD styles revealed the formation of ternary CZS films. Synchrotron X-ray diffraction measurements confirmed the presence of the two phases CuS and ZnS, which form the ternary compound CZS. Crystallite size increases from 75.29 nm to 105.46 nm as deposition time increases whereas the strain parameter decreases from 6.27*10-4 to 3.28*10-4. The obtained SEM images show that CZS thin films have a dense and rough surface topography. Spectrometric analysis of the deposited films confirmed the alloy nature of the elaborated films, whereas the corresponding values of band gaps were in the range of 3.28 to 3.17 eV. Results show that increasing the deposition time enhances the optical properties. Furthermore, the electrical properties of CZS films are influenced by the deposition time and phase transition. Significant improvements on these properties were obtained when the thin film thickness increased: the resistivity decreased from 95.10 to 0.12 Ω cm the carrier centration increased from 4.03×1021 to 14.07×1021 cm−3 and the mobility varied from 0.83 to 18.75 cm2 V−1 S−1.

Publisher

Trans Tech Publications, Ltd.

Subject

General Medicine

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