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Photocatalytic hydrogen production using mesoporous TiO2 doped with Pt

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dc.contributor 20533 es_ES
dc.coverage.spatial Global es_ES
dc.creator Guayaquil Sosa, Jesús Fabricio
dc.creator Serrano Rosales, Benito
dc.creator Valadés Pelayo, Patricio Javier
dc.creator de Lasa, Hugo
dc.date.accessioned 2021-06-16T20:34:00Z
dc.date.available 2021-06-16T20:34:00Z
dc.date.issued 2017
dc.identifier info:eu-repo/semantics/publishedVersion es_ES
dc.identifier.issn 0926-3373 es_ES
dc.identifier.uri http://ricaxcan.uaz.edu.mx/jspui/handle/20.500.11845/2591
dc.description.abstract A series of mesoporous TiO2 (meso-TiO2) were synthesized using the sol-gel technique. A Pluronic F127 triblock-copolymer, a structure-directing agent, was incorporated as a soft template into the sol-gel. In addition, and during a separate synthesis, the sol-gel was doped with a Pt precursor. Semiconductors were prepared with 1.00 wt.%, 2.50 wt.%, 5.00 wt.% Pt nominal loadings, respectively. They were calcined at 500 ◦C and 550 ◦C following synthesis. Morphological and structural properties were studied by: a) X-ray diffraction, b) UV–vis spectrophotometry, c) N2 adsorption-desorption (BET, BJH), and d) X-ray photoelectron spectroscopy (XPS). Optical band gap values for meso-TiO2 and Pt-meso-TiO2 were cal- culated by Kubelka-Munk (K-M) function coupled with Tauc plot methodology. It was observed that the prepared semiconductors displayed pore sizes in the 10–40 nm range with bimodal distributions. Their photocatalytic activity forhydrogenproductionvia water splitting was established ina Photo-CRECWater- II reactor under near-UV light irradiation. The aqueous solution contained 2% v/v ethanol, employed as a renewable organic scavenger. The prepared semiconductors showed that the mesoporous 2.50 wt.% Pt-TiO2 has the highest photoactivity for hydrogen generation. This suggests the important role played by the loading of platinum as a TiO2 dopant, reducing the optical band gap, increasing electron storage and diminishing, as a result, electron-hole recombination. The measured Quantum Yield (QY), obtained using a rigorous approach, was established for the mesoporous 2.50 wt.% Pt-TiO2 at a promising level of 22.6%. es_ES
dc.language.iso eng es_ES
dc.publisher Elsevier es_ES
dc.relation https://www.sciencedirect.com/science/article/abs/pii/S0926337317303338 es_ES
dc.relation.uri generalPublic es_ES
dc.rights Atribución-NoComercial-CompartirIgual 3.0 Estados Unidos de América *
dc.rights.uri http://creativecommons.org/licenses/by-nc-sa/3.0/us/ *
dc.source Applied Catalysis B: Environmental Vol. 211, pp. 337-348 es_ES
dc.subject.classification BIOLOGIA Y QUIMICA [2] es_ES
dc.subject.other Hydrogen production es_ES
dc.subject.other Photocatalysis es_ES
dc.subject.other Water splitting es_ES
dc.subject.other Photo-CREC Water-II reactor es_ES
dc.subject.other Platinum es_ES
dc.subject.other Titanium dioxide es_ES
dc.subject.other Quantum yield es_ES
dc.title Photocatalytic hydrogen production using mesoporous TiO2 doped with Pt es_ES
dc.type info:eu-repo/semantics/article es_ES


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