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Biomimetic Catalysts Based on Au@TiO2-MoS2-CeO2 Composites for the Production of Hydrogen by Water Splitting

Author
Fontánez, Kenneth; García, Diego; Ortiz, Dayna; Sampayo, Paola; Hernández, Luis; Cotto, María; Ducongé, José; Díaz, Francisco; Morant, Carmen; Petrescu, Florian; Machín, Abniel; Márquez, Francisco
Entity
UAM. Departamento de Física Aplicada
Publisher
MDPI
Date
2022-12-26
Citation
10.3390/ijms24010363
International Journal of Molecular Sciences 24.1 (2023): 363
 
 
 
ISSN
1661-6596 (print); 1422-0067 (online)
DOI
10.3390/ijms24010363
Project
Gobierno de España.PID2021-124667OB-I00
Editor's Version
https://doi.org/10.3390/ijms24010363
Subjects
Hydrogen Production; TiO2; Gold Nanoparticles; MoS2; CeO2; Water Splitting; Física
URI
http://hdl.handle.net/10486/706576
Rights
© 2022 by the authors. Licensee MDPI, Basel, Switzerland

Licencia Creative Commons
Esta obra está bajo una Licencia Creative Commons Atribución 4.0 Internacional.

Abstract

The photocatalytic hydrogen evolution reaction (HER) by water splitting has been studied, using catalysts based on crystalline TiO2 nanowires (TiO2NWs), which were synthesized by a hydrothermal procedure. This nanomaterial was subsequently modified by incorporating different loadings (1%, 3% and 5%) of gold nanoparticles (AuNPs) on the surface, previously exfoliated MoS2 nanosheets, and CeO2 nanoparticles (CeO2NPs). These nanomaterials, as well as the different synthesized catalysts, were characterized by electron microscopy (HR-SEM and HR-TEM), XPS, XRD, Raman, Reflectance and BET surface area. HER studies were performed in aqueous solution, under irradiation at different wavelengths (UV-visible), which were selected through the appropriate use of optical filters. The results obtained show that there is a synergistic effect between the different nanomaterials of the catalysts. The specific area of the catalyst, and especially the increased loading of MoS2 and CeO2NPs in the catalyst substantially improved the H2 production, with values of ca. 1114 µm/hg for the catalyst that had the best efficiency. Recyclability studies showed only a decrease in activity of approx. 7% after 15 cycles of use, possibly due to partial leaching of gold nanoparticles during catalyst use cycles. The results obtained in this research are certainly relevant and open many possibilities regarding the potential use and scaling of these heterostructures in the photocatalytic production of H2 from water
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Google™ Scholar:Fontánez, Kenneth - García, Diego - Ortiz, Dayna - Sampayo, Paola - Hernández, Luis - Cotto, María - Ducongé, José - Díaz, Francisco - Morant, Carmen - Petrescu, Florian - Machín, Abniel - Márquez, Francisco

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  • Producción científica en acceso abierto de la UAM [16855]

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All the documents from Biblos-e Archivo are protected by copyrights. Some rights reserved.
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