| Authors | Abdelouahab Gahtar1, Laid Dahbi2, Chouaieb Zaouche2, Said Benramache3, Amira Sbaihi3, Abdelghani Lakel3, Okba Belahssen3 |
| Affiliations |
1Department of Biology, Faculty of Sciences, University Elchahid Hamma Lakhder, 39000 El Oued, Algeria 2SALAMA Lab, Higher School of Saharan Agriculture – El Oued, PB 90 Chouhada, 39011 El-Oued, Algeria 3Laboratoire des Matériaux, des Énergies et de l’Environnement, University of Biskra 07000, Algeria |
| Е-mail | s.benramache@univ-biskra.dz |
| Issue | Volume 18, Year 2026, Number 3 |
| Dates | Received 25 March 2026; revised manuscript received 23 June 2026; published online 26 June 2026 |
| Citation | Abdelouahab Gahtar, Laid Dahbi, Chouaieb Zaouche, et al., J. Nano- Electron. Phys. 18 No 3, 03037 (2026) |
| DOI | https://doi.org/10.21272/jnep.18(3).03037 |
| PACS Number(s) | 73.61.Jc, 82.30.Lp |
| Keywords | Cobalt sulfide, Spray pyrolysis (9) , XRD (100) , FTIR (31) , Electrical conductivity (10) . |
| Annotation |
This study reports the deposition of cobalt sulfide (Co3S4) thin films on glass substrates using the spray pyrolysis technique at a substrate temperature of 350 ± 5 °C. The precursor solution was prepared from cobalt chloride hexahydrate and thiourea dissolved in bidistilled water, while a small amount of acetic acid was added to enhance the solubility and stability of the solution. The structural properties of the deposited films were investigated using X-ray diffraction analysis, which confirmed the formation of polycrystalline Co3S4 with a cubic spinel structure (Fd-3m). The films exhibited a preferred orientation along the (113) crystallographic plane. The average crystallite size was found to be approximately 13.4 nm, with a calculated lattice parameter of 9.405 Å, indicating good crystalline quality. Optical characterization revealed that the films possess a direct optical band gap of 1.88 eV, suggesting strong absorption in the visible region, which is advantageous for optoelectronic applications. FTIR spectroscopy confirmed the presence of characteristic Co-S bonding vibrations, verifying successful sulfide formation. Electrical measurements showed a high electrical conductivity of about 9.60 x 104 (Ω x cm) – 1, indicating quasi-metallic behavior and efficient charge transport within the film. These combined structural, optical, and electrical properties demonstrate that spray pyrolysis is a simple, low-cost, and effective method for producing high-quality Co3S4 thin films, making them promising candidates for applications in optoelectronic devices, sensors, and energy-related technologies. |
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List of References |