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Enhanced photocatalytic degradation of organic pollutants using cu-doped spinel ferrites synthesized via sol-gel auto-combustion: a study of structural, optical, and catalytic properties

Cumali CelikYalova Vocational School, Yalova University, Yalova, 77200, TürkiyeMuhammad YasarSchool of Material Science and Chemical Engineering, Xi’an Technological University, Xi’an, 710021, ChinaKhalid J. AlzahraniDepartment of Clinical Laboratories Sciences, College of Applied Medical Sciences, Taif University, Taif, Saudi ArabiaAnorgul I. AshirovaAssosiated professor, Department of General professional sciences, Mamun University, Khiva, UzbekistanYashwantsinh JadejaMarwadi University Research Center, Department of Chemistry, Faculty of Science, Marwadi University, Rajkot, Gujarat, IndiaR. RoopashreeDepartment of Chemistry and Biochemistry, School of Sciences, JAIN (Deemed to be University), Bangalore, Karnataka, IndiaSubhashree RayDepartment of Biochemistry, IMS and SUM Hospital, Siksha ‘O’ Anusandhan (Deemed to be University), Bhubaneswar, Odisha, IndiaKrishan Kumar SahSharda University, Greater Noida, Uttar Pradesh, 201310, IndiaSultonmakhmud PolvanovDepartment of Computer Science, Urgench State University, Urgench, UzbekistanKhalaf F. AlsharifDepartment of Clinical Laboratories Sciences, College of Applied Medical Sciences, Taif University, Taif, Saudi Arabia
ABI

Аннотация

CR dye, a toxic industrial pollutant discharged at 280,000 tons annually, poses severe environmental risks. In this study, we developed Cu-doped Sr₁₋₂Al₀.₄Fe₁.₆O₄ (x = 0.0, 0.4) spinel ferrites via sol-gel auto-combustion method as efficient photocatalysts for dye degradation. Cu-doping induced significant structural modifications: the crystallite size decreased from 28.011 to 20.438 nm, the lattice parameter contracted from 8.4679 to 8.3801 Å, and the BET surface area increased 3.7-fold (from 6.63 to 24.45 m²/g). The optical bandgap narrows from 2.6 to 2.3 eV, enhancing visible-light absorption. Under optimised conditions (pH 7, 30 °C, 10 mg catalyst, 10 ppm dye, 100 W visible light), Cu₀.₄Sr₀.₄Mn₀.₂Al₀.₄Fe₁.₆O₄ achieved 99.70% CR degradation in 100 min, compared to 52.45% for the undoped catalyst. Performance metrics showed a quantum yield of 2.77 × 10⁻⁶ molecules/photon and space-time yield of 1.39 × 10⁻⁷ molecules/photon. Hydroxyl radicals were identified as the primary reactive species in scavenger studies. The catalyst demonstrated versatility by degrading multiple dyes: Rhodamine B (84.23%), Alizarin Yellow (71.83%), and Methylene Blue (53.10%). The addition of H₂O₂ (6 mM) accelerated the complete degradation to 65 min. The catalyst maintained an efficiency of 91.34% after five cycles, confirming its stability. This Cu-doped spinel ferrite system presents a sustainable solution for the treatment of industrial wastewater.

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