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dc.contributor.author CRUZ LOPEZ, ARQUIMEDES
dc.contributor.author SUAREZ VAZQUEZ, SANTIAGO IVAN
dc.contributor.author RAMOS RIVERA, CARLOS ALBERTO
dc.contributor.author ZANELLA SPECIA, RODOLFO
dc.contributor.author Solís Casados, Dora Alicia
dc.creator CRUZ LOPEZ, ARQUIMEDES; 36219
dc.creator SUAREZ VAZQUEZ, SANTIAGO IVAN; 320918
dc.creator RAMOS RIVERA, CARLOS ALBERTO; 634519
dc.creator ZANELLA SPECIA, RODOLFO; 37915
dc.creator Solís Casados, Dora Alicia; 121120
dc.date.accessioned 2020-02-24T18:17:43Z
dc.date.available 2020-02-24T18:17:43Z
dc.date.issued 2020-03-01
dc.identifier.issn 1369-8001
dc.identifier.uri http://hdl.handle.net/20.500.11799/105779
dc.description.abstract In this work, the characterization of the RuO2–Rh2O3 system supported on Ag1-xNbO3 (where x = 0, 0.1, and 0.5) prepared by the solid-state route at 900 °C for its employment as semiconductor in the production of hydrogen is presented. The physicochemical characterization evidences that the structural and electronic differences in the support were observed when the content of silver diminished by 50%. By X-ray diffraction of AgNbO3 stoichiometric ratio is confirmed, while the support, where there is a diminution of the silver content, evolved toward Ag2Nb2O11 mixed with the AgNbO3 with a band gap toward the visible region (2.5 eV). The results of scanning electron microscopy confirmed the presence of particles with sizes lower than 10 nm in both cases. Impregnation of the Ru–Rh bimetallic phase indicates that the amount of dispersed ruthenium compounds (RuO2, RuRh2O4 and RuNbO4) were greater than the nominal charge (1.40 > RuO2/Rh2O3 <2.83). The electrochemical evaluation revealed a performance of 2.5-times greater for the 5%RuO2-3% Rh2O3/Ag0.5NbO3 with respect to its homologue: 5%RuO2-3% Rh2O3/AgNbO3. © 2019 Elsevier Ltd es
dc.description.sponsorship Consejo Nacional de Ciencia y Tecnología, Copenhagen Graduate School for Nanoscience and Nanotechnology. The authors are grateful to the Materials Construction Laboratory of FIC-UANL for the facilities lent in the development of these materials and M.C. Viridiana Maturano Rojas from ICAT-UNAM for TEM analysis. CARR thanks CONACYT for the support granted through Masters-degree scholarship, a mixed scholarship, and the Nanoscience and Nanotechnology Network from CONACYT. es
dc.language.iso eng es
dc.publisher Elsevier es
dc.rights openAccess es
dc.rights.uri http://creativecommons.org/licenses/by-nc-nd/4.0
dc.subject electrocatalysis es
dc.subject semiconductor es
dc.subject niobates es
dc.subject catalysts Ru-Rh es
dc.subject.classification CIENCIAS FÍSICO MATEMÁTICAS Y CIENCIAS DE LA TIERRA es
dc.subject.classification CIENCIAS FÍSICO MATEMÁTICAS Y CIENCIAS DE LA TIERRA
dc.title Characterization of RuO2–Rh2O3 supported on Ag1-xNbO3; at x=0, 0.1 and 0.5 for the H2 production es
dc.type Artículo es
dc.provenance Científica es
dc.road Dorada es
dc.organismo Química es
dc.ambito Internacional es
dc.cve.CenCos 20403 es
dc.modalidad Artículo especializado para publicar en revista indizada es
dc.audience students es
dc.audience researchers es
dc.type.conacyt article
dc.identificator 1
dc.relation.vol 107
dc.relation.año 2020
dc.relation.no 1
dc.relation.doi https://doi.org/10.1016/j.mssp.2019.104806


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  • Título
  • Characterization of RuO2–Rh2O3 supported on Ag1-xNbO3; at x=0, 0.1 and 0.5 for the H2 production
  • Autor
  • CRUZ LOPEZ, ARQUIMEDES
  • SUAREZ VAZQUEZ, SANTIAGO IVAN
  • RAMOS RIVERA, CARLOS ALBERTO
  • ZANELLA SPECIA, RODOLFO
  • Solís Casados, Dora Alicia
  • Fecha de publicación
  • 2020-03-01
  • Editor
  • Elsevier
  • Tipo de documento
  • Artículo
  • Palabras clave
  • electrocatalysis
  • semiconductor
  • niobates
  • catalysts Ru-Rh
  • Los documentos depositados en el Repositorio Institucional de la Universidad Autónoma del Estado de México se encuentran a disposición en Acceso Abierto bajo la licencia Creative Commons: Atribución-NoComercial-SinDerivar 4.0 Internacional (CC BY-NC-ND 4.0)

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