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Integration of the straightforward and environmentally friendly sol–gel/solvothermal and photodeposition methods as a way to prepare highly photoactive Au/S-TiO2 and Cu/S-TiO2 materials

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Fecha
2022
Autor
Mosquera-Pretelt J
Mejía M.I
Marín J.M.

Citación

       
TY - GEN T1 - Integration of the straightforward and environmentally friendly sol–gel/solvothermal and photodeposition methods as a way to prepare highly photoactive Au/S-TiO2 and Cu/S-TiO2 materials Y1 - 2022 UR - http://hdl.handle.net/11407/8058 PB - Springer Science and Business Media B.V. AB - ER - @misc{11407_8058, author = {}, title = {Integration of the straightforward and environmentally friendly sol–gel/solvothermal and photodeposition methods as a way to prepare highly photoactive Au/S-TiO2 and Cu/S-TiO2 materials}, year = {2022}, abstract = {}, url = {http://hdl.handle.net/11407/8058} }RT Generic T1 Integration of the straightforward and environmentally friendly sol–gel/solvothermal and photodeposition methods as a way to prepare highly photoactive Au/S-TiO2 and Cu/S-TiO2 materials YR 2022 LK http://hdl.handle.net/11407/8058 PB Springer Science and Business Media B.V. AB OL Spanish (121)
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Resumen
Au/S-TiO2 and Cu/S-TiO2 materials were prepared by integrating the sol–gel/solvothermal and photodeposition methods, which constituted a straightforward and environmentally friendly synthesis route with a low time requirement and without heat treatments at high temperatures. The sol–gel/solvothermal method was used to synthesize the base material (S-TiO2) from TiOSO4 as the only S and Ti precursor, developed in a previous study. The photodeposition method was used to incorporate Au and Cu metals from chloroauric acid and copper nitrate onto S-TiO2. The materials were prepared by varying the metal load and the photodeposition time. The photocatalysts were characterized by X-ray diffraction, Raman spectroscopy, ultraviolet–visible diffuse reflectance spectroscopy, X-ray photoelectron spectroscopy, scanning electron microscopy, energy-dispersive X-ray spectroscopy, transmission electron microscopy, and X-ray fluorescence. Formic acid was used to evaluate the photoactivity of the photodeposited materials. The results showed that the materials achieved a higher photoactivity than S-TiO2 under ultraviolet light and most of the materials, especially Cu/S-TiO2, achieved slightly higher activity under visible light. The material photodeposited with 0.5% wt of copper for 90 min had the highest photoactivity under visible light. Graphical abstract: [Figure not available: see fulltext.]. © 2022, The Author(s), under exclusive licence to Springer Nature B.V.
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http://hdl.handle.net/11407/8058
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