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Fe3O4-TiO2 Thin Films in Solar Photocatalytic Processes

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URI: http://hdl.handle.net/10498/28589

DOI: 10.3390/ma15196718

ISSN: 1996-1944

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Author/s
Aguinaco Martín, AlmudenaAuthority UCA; Manuel Delgado, José ManuelAuthority UCA; Blanco Ollero, EduardoAuthority UCA; Domínguez de la Vega, ManuelAuthority UCA; Litrán Ramos, RocíoAuthority UCA; Delgado Jaén, Juan JoséAuthority UCA; Ramírez del Solar, MilagrosaAuthority UCA
Date
2022-10
Department
Ciencia de los Materiales e Ingeniería Metalúrgica y Química Inorgánica; Física de la Materia Condensada
Source
Materials, Vol. 15, Núm. 19, 2022
Abstract
The optical properties of 5wt% Fe3O4-TiO2 thin films were evaluated in detail with the aim of proposing a mechanism for solar photocatalytic processes and highlighting the advantages over the use of bare TiO2. The results showed that the incorporation of 5wt% Fe3O4 enhanced the optical properties by a redshift to a wavelength in the visible range, reducing the anatase/rutile band gap energy from 3.2 eV to 2.8 eV. Photoluminescence studies reveal a superior separation efficiency of photoexcited electron-hole pairs when Fe3O4 nanoparticles (NPs) are present in the photocatalyst. X-ray photoelectron spectroscopy spectra confirm the presence of Fe3O4 and existence of a chemical bonding between TiO2 and Fe3O4 NPs. Moreover, in this study, a mechanism of solar photocatalytic processes involving Fe3O4-TiO2 thin films is proposed and it is supported by experimental results. Finally, solar photocatalytic experiments were carried out, indicating that the effectiveness for the removal of the selected pharmaceutical is considerably improved when the composite material is used as catalyst. Furthermore, it was demonstrated that the photocatalytic activity of the prepared Fe3O4-TiO2 thin films depends on their thickness, achieving the highest pharmaceutical removal yields using the 2 mu m thick sample. The stability and reusability of the catalyst was confirmed studying the photocatalytic activity over three cycles.
Subjects
titania; magnetite; thin film; photocatalysis
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