Transnational excellent research network in the R&D of fuel cells powered by hydrogen ...



  • Enhanced proton conductivity of Nafion-azolebisphosphonate membranes for PEM fuel cells, F. Teixeira, A.I de Sá, A.P.S. Teixeira, C.M. Rangel, New Journal of Chemistry, Royal Society of Chemistry, New J. Chem., 2019, 43, 15249-15257 - DOI: 10.1039/C9NJ03405F

  • Liquid water in cathode Gas Diffusion Layers of PEM fuel cells: identification of various pore filling regimes from pore network simulations, P. Carrère, M. Prat, International Journal of Heat and Mass Transfer 129, 1043–1056, 2019. - DOI: 10.1016/j.ijheatmasstransfer.2018.10.004

  • On the stablity of antimony doped tin oxide supports in proton Exchange membrane fuel cell and water electrolysis, I. Jiménez-Morales, S. Cavaliere, M. Dupont, D. Jones, J. Rozière. Sustainable Energy Fuels 3, 1526 – 1535, 2019. - DOI: 10.1039/C8SE00619A

  • Comprenhensive Review and future perspectives on the photocatalytic production of hydrogen, J. Corredor, M. J. Rivero, C. Rangel, F. Gloaguen, I. Ortiz. Chemical Technology & biotechnology. Article in press 2019. - DOI: 10.1002/jctb.6123

  • Nafion phosponic acid composite membranes for proton Exchange membranes fuel cells, F.C. Teixeira, A. I. de Sá, A. P. S. Teixeira, C. M. Rangel. Polymers, Applied Surface Science 487, 889-897, 2019. - DOI: 10.1016/j.apsusc.2019.05.078

  • Fuel cell electrolyte membranes based on copolymers of protic ionic liquid [HSO3-BVIm][TfO] with MMA and hPFSVE, V.M. Ortiz-Martínez, A. Ortiz, V. Fernández-Stefanuto, E. Tojo, M. Colpaert, B. Ameduri, I. Ortiz. Polymers, Volume 179, 28 September 2019. - DOI: 10.1016/j.polymer.2019.121583

  • Membrane characterization via evapoporometry (EP) and liquid-liquid displacement porosimetry (LLDP) techniques, M.B. Tanis-Kanbur, R. I. Peinador,  X. Hue, J. I. Calvo, J. W. Chew. Journal of Membrane Science, Volume 586, 15 September 2019, Pages 248-258. - DOI: 10.1016/j.memsci.2019.05.077

  • Crosslinked termopolymers of vinylidene fluoride, perfluoro-3-6-dioxa-4-methyl-7-octene sulfonyl in PEMFC applications, M. Colpaert, M. Zaton, V. Ladmiral, D. Jones, J. Rozière, B. Ameduri. Polymer Chemistry, 10, 2176-2189, 2019 - DOI: 10.1039/c9py00188c

  • Challenges arising from the use of TiO2/rGO/Pt photocatalysts to produce hydrogen from crude glycerol compared to synthetic glycerol, P. Ribao, M. A. Esteves, V. R. Fernandes, M. J. Rivero, C. M. Rangel, I. Ortiz, International Journal of Hydrogen Energy. Article in press. 2018 -

  • Contribution of upcycling surplus hydrogen to design a sustainable supply chain: The case study of Northern Spain, M. Yáñez, A. Ortiz, B. Brunaud, I.E. Grossmann, I. Ortiz, Applied Energy, 231, 777-787, 2018 -

  • Polyol synthesis of reduced graphene oxide supported platinum electrocatalysts for fuel cells: Effect of Pt precursor support oxidation level and pH, L.P. Hoe, M. Boaventura, T. Lagarteria, L.K. Shyan, A. Mendes, International Journal of Hydrogen Energy, 43, 16986-16997, 2018 -

  • Kinetic performance of TiO2/Pt/reduced graphene oxide composites in the photocatalytic hydrogen production, M.J. Rivero, O. Iglesias, P. Ribao, I. Ortiz, International Journal of Hydrogen Energy, 2018 Article in press -

  • Revisiting the Radical Copolymerization of Vinylidene fluoride with Perfluoro-3,6-dioxa-4-methyl-7-octene sulfonyl fluoride for Proton Conducting Membranes, M. Colpaert, M. Zatoń, G. Lopez, D. J.Jones, B. Améduri, Journal of Hydrogen and Energy 43, 16986-16997, 2018 - doi.10.1016/j.ijhydene.2018.03.153.

  • 1D + 3D two-phase flow numerical model of a proton exchange membrane fuel cell, R. B. Ferreira, D. S. Falcão, V. B. Oliveira, A. M. F. R. Pinto, Applied Energy, 203 (2017) 474-95 -

  • Identification of catalytic sites in cobalt-nitrogen-carbon materials for the oxygen reduction reaction, Zitolo, N. Ranjbar-Sahraie, T. Mineva, J. Li, Q. Ji, S. Stamatin, G. F. Harrington, S. M. Lyth, P. Krtil, S. Mukerjee, E. Fonda, F. Jaouen, Nature Communications 8, 957 (2017) - doi:10.1038/s41467-017-01100-7

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