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Composite Sulfonated Polyether-Ether Ketone Membranes with SBA-15 for Electrochemical Energy Systems

The aim of this work is the evaluation of a Sulfonated Poly Ether-Ether Ketone (S-PEEK) polymer modified by the addition of pure Santa Barbara Amorphous-15 (SBA-15, mesoporous silica) and SBA-15 previously impregnated with phosphotungstic acid (PWA) fillers (PWA/SBA-15) in order to prepare composite...

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Autores principales: Rico-Zavala, A., Pineda-Delgado, J. L., Carbone, A., Saccà, A., Passalacqua, E., Gurrola, M.P., Alvarez, A., Rivas, S., Ledesma-García, J., Arriaga, L.G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7178128/
https://www.ncbi.nlm.nih.gov/pubmed/32235307
http://dx.doi.org/10.3390/ma13071570
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author Rico-Zavala, A.
Pineda-Delgado, J. L.
Carbone, A.
Saccà, A.
Passalacqua, E.
Gurrola, M.P.
Alvarez, A.
Rivas, S.
Ledesma-García, J.
Arriaga, L.G.
author_facet Rico-Zavala, A.
Pineda-Delgado, J. L.
Carbone, A.
Saccà, A.
Passalacqua, E.
Gurrola, M.P.
Alvarez, A.
Rivas, S.
Ledesma-García, J.
Arriaga, L.G.
author_sort Rico-Zavala, A.
collection PubMed
description The aim of this work is the evaluation of a Sulfonated Poly Ether-Ether Ketone (S-PEEK) polymer modified by the addition of pure Santa Barbara Amorphous-15 (SBA-15, mesoporous silica) and SBA-15 previously impregnated with phosphotungstic acid (PWA) fillers (PWA/SBA-15) in order to prepare composite membranes as an alternative to conventional Nafion(®) membranes. This component is intended to be used as an electrolyte in electrochemical energy systems such as hydrogen and methanol Proton Exchange Membrane Fuel Cell (PEMFC) and Electrochemical Hydrogen Pumping (EHP). The common requirements for all the applications are high proton conductivity, thermomechanical stability, and fuel and oxidant impermeability. The morphology of the composite membranes was investigated by Scanning Electron Microscopy- Energy Dispersive X-ray Spectroscopy (SEM-EDS) analysis. Water Uptake (Wup), Ion Exchange Capacity (IEC), proton conductivity, methanol permeability and other physicochemical properties were evaluated. In PEMFC tests, the S-PEEK membrane with a 10 wt.% SBA-15 loading showed the highest performance. For EHP, the inclusion of inorganic materials led to a back-diffusion, limiting the compression capacity. Concerning methanol permeability, the lowest methanol crossover corresponded to the composites containing 5 wt.% and 10 wt.% SBA-15.
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spelling pubmed-71781282020-04-28 Composite Sulfonated Polyether-Ether Ketone Membranes with SBA-15 for Electrochemical Energy Systems Rico-Zavala, A. Pineda-Delgado, J. L. Carbone, A. Saccà, A. Passalacqua, E. Gurrola, M.P. Alvarez, A. Rivas, S. Ledesma-García, J. Arriaga, L.G. Materials (Basel) Article The aim of this work is the evaluation of a Sulfonated Poly Ether-Ether Ketone (S-PEEK) polymer modified by the addition of pure Santa Barbara Amorphous-15 (SBA-15, mesoporous silica) and SBA-15 previously impregnated with phosphotungstic acid (PWA) fillers (PWA/SBA-15) in order to prepare composite membranes as an alternative to conventional Nafion(®) membranes. This component is intended to be used as an electrolyte in electrochemical energy systems such as hydrogen and methanol Proton Exchange Membrane Fuel Cell (PEMFC) and Electrochemical Hydrogen Pumping (EHP). The common requirements for all the applications are high proton conductivity, thermomechanical stability, and fuel and oxidant impermeability. The morphology of the composite membranes was investigated by Scanning Electron Microscopy- Energy Dispersive X-ray Spectroscopy (SEM-EDS) analysis. Water Uptake (Wup), Ion Exchange Capacity (IEC), proton conductivity, methanol permeability and other physicochemical properties were evaluated. In PEMFC tests, the S-PEEK membrane with a 10 wt.% SBA-15 loading showed the highest performance. For EHP, the inclusion of inorganic materials led to a back-diffusion, limiting the compression capacity. Concerning methanol permeability, the lowest methanol crossover corresponded to the composites containing 5 wt.% and 10 wt.% SBA-15. MDPI 2020-03-29 /pmc/articles/PMC7178128/ /pubmed/32235307 http://dx.doi.org/10.3390/ma13071570 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Rico-Zavala, A.
Pineda-Delgado, J. L.
Carbone, A.
Saccà, A.
Passalacqua, E.
Gurrola, M.P.
Alvarez, A.
Rivas, S.
Ledesma-García, J.
Arriaga, L.G.
Composite Sulfonated Polyether-Ether Ketone Membranes with SBA-15 for Electrochemical Energy Systems
title Composite Sulfonated Polyether-Ether Ketone Membranes with SBA-15 for Electrochemical Energy Systems
title_full Composite Sulfonated Polyether-Ether Ketone Membranes with SBA-15 for Electrochemical Energy Systems
title_fullStr Composite Sulfonated Polyether-Ether Ketone Membranes with SBA-15 for Electrochemical Energy Systems
title_full_unstemmed Composite Sulfonated Polyether-Ether Ketone Membranes with SBA-15 for Electrochemical Energy Systems
title_short Composite Sulfonated Polyether-Ether Ketone Membranes with SBA-15 for Electrochemical Energy Systems
title_sort composite sulfonated polyether-ether ketone membranes with sba-15 for electrochemical energy systems
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7178128/
https://www.ncbi.nlm.nih.gov/pubmed/32235307
http://dx.doi.org/10.3390/ma13071570
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