Influence of Sn and Al Doping on ZnO thin films: A Study of Structural, Optical, and Langmuir Adsorption Properties for Photocatalytic Applications

سال انتشار: 1404
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 14

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شناسه ملی سند علمی:

JR_IJMSEI-22-4_003

تاریخ نمایه سازی: 17 فروردین 1405

چکیده مقاله:

Zinc oxide (ZnO) thin films have garnered significant interest for their applications in optoelectronics and environmental remediation due to their exceptional optical, electrical, and photocatalytic properties. However, the high resistivity and rapid charge recombination of pure ZnO necessitate doping to enhance its performance. In this study, ZnO thin films doped with tin (Sn) and aluminum (Al) were synthesized via a cost-effective pneumatic spray technique. The structural, optical, and morphological properties of the films were systematically characterized using X-ray diffraction (XRD), UV-Vis spectrophotometry, scanning electron microscopy (SEM), and energy-dispersive X-ray spectroscopy (EDX). The results indicate that Sn and Al doping significantly influence ZnO’s crystallinity, bandgap energy, and surface morphology. The optimal crystallite size was obtained for ۱ wt.% Sn (۳۷.۹۸ nm) and ۵ wt.% Al (۴۸.۶۳ nm), while excessive doping (>۳ wt.%) introduced microstrain (۱۰.۴۱ × ۱۰⁻⁴ for Sn and ۷.۱۳ × ۱۰⁻⁴ for Al), reducing crystallinity. The optical bandgap decreased from ۳.۲۵۴ eV (pure ZnO) to ۳.۱۴۲ eV (۱ wt.% Sn) and ۳.۱۵۲ eV (۵ wt.% Al), accompanied by increased Urbach energy (۰.۳۴ eV for ۵ wt.% Al). The highest optical transmittance (۸۶%) was observed for ۳ wt.% Al-doped ZnO. Pure ZnO exhibited the highest photocatalytic efficiency, achieving ۸۵% methylene blue degradation under solar irradiation. Langmuir adsorption modeling revealed that Sn-doped ZnO exhibited the highest adsorption capacity (۱.۴۲۲ mg/g), followed by Al-doped ZnO (۰.۶۱۷ mg/g) and pure ZnO (۰.۴۹۵ mg/g). These findings emphasize the critical role of doping concentration in optimizing ZnO thin films for advanced photocatalytic and optoelectronic applications.

نویسندگان

Aicha Kater

Physics Laboratory of Thin Films and Applications, Biskra University, BP ۱۴۵ RP, ۰۷۰۰۰, Biskra, Algeria

Saâd Rahmane

Physics Laboratory of Thin Films and Applications, Biskra University, BP ۱۴۵ RP, ۰۷۰۰۰, Biskra, Algeria

Fatima Djenidi

Physics Laboratory of Thin Films and Applications, Biskra University, BP ۱۴۵ RP, ۰۷۰۰۰, Biskra, Algeria

Hala Nezzal

Physics Laboratory of Photonics and Multifunctional Nanomaterials, BP ۱۴۵, RP, ۰۷۰۰۰, Biskra, Algeria

Nourelhouda Mokrani

Physics Laboratory of Thin Films and Applications, Biskra University, BP ۱۴۵ RP, ۰۷۰۰۰, Biskra, Algeria

Elhachmi Guettaf Temam

Physics Laboratory of Thin Films and Applications, Biskra University, BP ۱۴۵ RP, ۰۷۰۰۰, Biskra, Algeria

Hadjer Barkat

Physics Laboratory of Thin Films and Applications, Biskra University, BP ۱۴۵ RP, ۰۷۰۰۰, Biskra, Algeria

Boutheina Saadi

Physics Laboratory of Thin Films and Applications, Biskra University, BP ۱۴۵ RP, ۰۷۰۰۰, Biskra, Algeria

Brahim Gasmi

Physics Laboratory of Thin Films and Applications, Biskra University, BP ۱۴۵ RP, ۰۷۰۰۰, Biskra, Algeria

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