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dc.contributor.author | Teruel-Juanes, Roberto | es_ES |
dc.contributor.author | del Río, Carmen | es_ES |
dc.contributor.author | Gil-Castell, O. | es_ES |
dc.contributor.author | Primaz, Carmem | es_ES |
dc.contributor.author | Ribes-Greus, Amparo | es_ES |
dc.date.accessioned | 2023-05-12T18:02:11Z | |
dc.date.available | 2023-05-12T18:02:11Z | |
dc.date.issued | 2022-01-20 | es_ES |
dc.identifier.issn | 0021-8995 | es_ES |
dc.identifier.uri | http://hdl.handle.net/10251/193332 | |
dc.description | "This is the peer reviewed version of the following article: [FULL CITE], which has been published in final form at [Link to final article using the DOI]. This article may be used for non-commercial purposes in accordance with Wiley Terms and Conditions for Self-Archiving." | es_ES |
dc.description.abstract | [EN] A set of styrene-ethylene-butylene-styrene triblock copolymer (SEBS) membranes with 10 or 25 wt.% divinyl-benzene (DVB) as a crosslinking agent were prepared and validated. Physicochemical characterization revealed suitable hydrolytic and thermal stability of photo-crosslinked membranes containing 25%wt. DVB and post-sulfonated. These compositions were evaluated in H2/O2 single cells, and electrical and proton conductivities were furtherly assessed. The membranes with the milder post-sulfonation showed greater proton conductivity than those with excessive sulfonation. In terms of electrical conductivity, a universal power law was applied, and the values obtained were low enough for being used as polyelectrolytes. At the analyzed temperatures, the charge transport process follows a long-range pathway or vehicular model. Finally, fuel cell performance revealed the best behavior for the membrane with 25 wt.% DVB, photo-crosslinked during 30 min and mild sulfonated, with a promising power density of 526 mW·cm-2. Overall, the results obtained highlight the promising fuel cell performance of these cost-effective triblock copolymer-based membranes and indicate that higher sulfonation does not necessarily imply better power density. | es_ES |
dc.description.sponsorship | Ministerio de Economía, Industria y Competitividad, Gobierno de España, Grant/Award Number: ENE2017-86711-C3-1-R | es_ES |
dc.language | Inglés | es_ES |
dc.publisher | John Wiley & Sons | es_ES |
dc.relation.ispartof | Journal of Applied Polymer Science | es_ES |
dc.rights | Reserva de todos los derechos | es_ES |
dc.subject | Copolymers | es_ES |
dc.subject | Crosslinking | es_ES |
dc.subject | Fuel cells | es_ES |
dc.subject | Membranes | es_ES |
dc.subject | Polyelectrolytes | es_ES |
dc.subject.classification | MAQUINAS Y MOTORES TERMICOS | es_ES |
dc.title | Triblock SEBS/DVB crosslinked and sulfonated membranes: fuel cell performance and conductivity | es_ES |
dc.type | Artículo | es_ES |
dc.identifier.doi | 10.1002/app.50671 | es_ES |
dc.relation.projectID | info:eu-repo/grantAgreement/AEI//ENE2017-86711-C3-1-R//SISTEMA INTEGRADO DE DESCARBONIZACION Y PRODUCCION DE ENERGIA BASADO EN PILAS DE COMBUSTIBLES DE METANOL DIRECTO PARA APLICACIONES NAVALES Y AEROESPACIALES/ | es_ES |
dc.relation.projectID | info:eu-repo/grantAgreement/UPV//PAID-10-19//Mejora de prestaciones del páncreas artificial ante ingestas y ejercicio mediante observadores de perturbaciones y técnicas de compensación de retardos/ | es_ES |
dc.relation.projectID | info:eu-repo/grantAgreement/GVA//APOSTD%2F2020%2F155/ | es_ES |
dc.relation.projectID | info:eu-repo/grantAgreement/AEI//ENE2017-90932-REDT/ | es_ES |
dc.rights.accessRights | Abierto | es_ES |
dc.contributor.affiliation | Universitat Politècnica de València. Instituto de Tecnología de Materiales - Institut de Tecnologia de Materials | es_ES |
dc.contributor.affiliation | Universitat Politècnica de València. Escuela Técnica Superior de Ingenieros Industriales - Escola Tècnica Superior d'Enginyers Industrials | es_ES |
dc.description.bibliographicCitation | Teruel-Juanes, R.; Del Río, C.; Gil-Castell, O.; Primaz, C.; Ribes-Greus, A. (2022). Triblock SEBS/DVB crosslinked and sulfonated membranes: fuel cell performance and conductivity. Journal of Applied Polymer Science. 139(4):1-16. https://doi.org/10.1002/app.50671 | es_ES |
dc.description.accrualMethod | S | es_ES |
dc.relation.publisherversion | https://doi.org/10.1002/app.50671 | es_ES |
dc.description.upvformatpinicio | 1 | es_ES |
dc.description.upvformatpfin | 16 | es_ES |
dc.type.version | info:eu-repo/semantics/publishedVersion | es_ES |
dc.description.volume | 139 | es_ES |
dc.description.issue | 4 | es_ES |
dc.relation.pasarela | S\430134 | es_ES |
dc.contributor.funder | Generalitat Valenciana | es_ES |
dc.contributor.funder | AGENCIA ESTATAL DE INVESTIGACION | es_ES |
dc.contributor.funder | Agencia Estatal de Investigación | es_ES |
dc.contributor.funder | European Regional Development Fund | es_ES |
dc.contributor.funder | Universitat Politècnica de València | es_ES |
dc.subject.ods | 07.- Asegurar el acceso a energías asequibles, fiables, sostenibles y modernas para todos | es_ES |
dc.subject.ods | 08.- Fomentar el crecimiento económico sostenido, inclusivo y sostenible, el empleo pleno y productivo, y el trabajo decente para todos | es_ES |
dc.subject.ods | 09.- Desarrollar infraestructuras resilientes, promover la industrialización inclusiva y sostenible, y fomentar la innovación | es_ES |