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Investigations on the synthesis and characterization of silver-doped MoO3 thin films for photocatalytic applications

Article scientifique 2025 Anglais

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Abstract In this study, we aimed to enhance the photocatalytic performance of molybdenum oxide (MoO 3 ) thin films by doping with silver (Ag) via a spray pyrolysis technique. The primary objective for silver incorporation was intended to introduce additional energy levels into the band structure of MoO 3 , improving its efficiency. Structural, optical, and photocatalytic properties were analyzed using X-ray diffraction (XRD) and optical spectroscopy. XRD results confirmed an orthorhombic phase with a (040) preferential orientation for all samples. Optimal crystallinity was observed with 2% Ag doping, yielding an 84 nm crystallite size, while higher doping levels reduced crystallite size. Band gap energy narrowed from 3.07 eV (undoped) to 2.94 eV (2% Ag-doped), indicating electronic structure changes. Impedance spectroscopy revealed superior electrical properties at 4% Ag doping, enhancing charge transport. Photocatalytic performance, assessed via dye degradation, showed significant improvement with silver doping, the degradation rate peaking at 4% Ag. These results demonstrate that silver doping optimizes structural and electronic properties of MoO 3 thin films, leading to enhanced photocatalytic activity.

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Kamoun, O., Akkari, A., Alhalaili, B., Vidu, R., Turki-Kamoun, N. (2025). Investigations on the synthesis and characterization of silver-doped MoO3 thin films for photocatalytic applications. https://doi.org/10.1038/s41598-024-84485-y

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