F.J. Rodríguez-Varela
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Featured researches published by F.J. Rodríguez-Varela.
Electrocatalysis | 2018
Velumani Thiagarajan; Palaniswamy Karthikeyan; Ramasamy Manoharan; S. Sampath; A. Hernández-Ramírez; M.E. Sánchez-Castro; I.L. Alonso-Lemus; F.J. Rodríguez-Varela
AbstractWe propose a high performance electrocatalyst based on Pt-Ru-NiTiO3 nanoparticles supported on Vulcan carbon (Pt-Ru-NiTiO3/C) for the methanol oxidation reaction (MOR) in acid medium. The electrocatalyst is prepared from a two-step procedure using a wet chemical method. The morphological studies from TEM indicate that Pt-Ru-NiTiO3 nanoparticles are uniformly distributed on Vulcan carbon. The XRD shows the fcc structure of Pt nanomaterials, while the chemical composition examined using XPS indicates the presence of large fractions of Pt0 and Ru0 species (i.e., metallic state), OH− and O2− species are also formed on the surface of the catalyst. The Pt-Ru-NiTiO3/C electrocatalyst exhibits a higher catalytic activity compared to a PtRu/C alloy. Pt-NiTiO3/C is also more active than the alloy. Therefore, on one side, the addition of Ru enhances the MOR through the formation of oxygenated adsorbed species on Ru, which thereby promotes the oxidation of CO to CO2 at more negative potentials (i.e., the bifunctional mechanism). On the other hand, the superior electrocatalytic performance of Pt-Ru-NiTiO3/C is attributed also to the synergistic effects of NiTiO3, which promotes the reaction increasing the current density and shifting the onset potential to even more negative values, suggesting that it also participates in the bifunctional mechanism along with Ru. From the results shown here, Pt-Ru-NiTiO3/C can be a promising anode nanomaterial for direct methanol fuel cells (DMFCs). Graphical Abstractᅟ
International Journal of Hydrogen Energy | 2014
D. González-Quijano; W.J. Pech-Rodríguez; J.A. González-Quijano; J.I. Escalante-García; G. Vargas-Gutiérrez; I.L. Alonso-Lemus; F.J. Rodríguez-Varela
International Journal of Hydrogen Energy | 2014
N.M. Sánchez-Padilla; D. Morales-Acosta; M.D. Morales-Acosta; S.M. Montemayor; F.J. Rodríguez-Varela
International Journal of Hydrogen Energy | 2016
I.L. Alonso-Lemus; F.J. Rodríguez-Varela; M.Z. Figueroa-Torres; M.E. Sanchez-Castro; A. Hernández-Ramírez; D. Lardizabal-Gutierrez; P. Quintana-Owen
Applied Catalysis B-environmental | 2017
W.J. Pech-Rodríguez; D. González-Quijano; G. Vargas-Gutiérrez; Cláudia Morais; Teko W. Napporn; F.J. Rodríguez-Varela
Applied Catalysis B-environmental | 2017
A.A. Siller-Ceniceros; M.E. Sánchez-Castro; D. Morales-Acosta; J.R. Torres-Lubian; F.J. Rodríguez-Varela
International Journal of Hydrogen Energy | 2017
Velumani Thiagarajan; Ramasamy Manoharan; Palaniswamy Karthikeyan; Eliyan Nikhila; A. Hernández-Ramírez; F.J. Rodríguez-Varela
International Journal of Hydrogen Energy | 2016
D. Morales-Acosta; F.J. Rodríguez-Varela; R. Benavides
International Journal of Hydrogen Energy | 2014
W.J. Pech-Rodríguez; D. González-Quijano; G. Vargas-Gutiérrez; F.J. Rodríguez-Varela
International Journal of Hydrogen Energy | 2017
I.L. Alonso-Lemus; M.Z. Figueroa-Torres; A.B. García-Hernández; B. Escobar-Morales; F.J. Rodríguez-Varela; Antonio F. Fuentes; D. Lardizabal-Gutierrez; P. Quintana-Owen