Enhanced proton conductivity of Nafionazolebisphosphonate membranes for PEM fuel cells

Fuel cells are among the cleaner alternatives of sustainable energy technologies, where their protón exchange membranes continue to be a key component with many challenges and opportunities ahead. In this study, different indazole- and benzotriazolebisphosphonic acids were prepared and incorporated i...

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Detalhes bibliográficos
Autor principal: Teixeira, António P. S. (author)
Outros Autores: Teixeira, Fátima C. (author), Sá, Ana I. de (author), Rangel, C. M. (author)
Formato: article
Idioma:por
Publicado em: 2020
Assuntos:
Texto completo:http://hdl.handle.net/10174/26453
País:Portugal
Oai:oai:dspace.uevora.pt:10174/26453
Descrição
Resumo:Fuel cells are among the cleaner alternatives of sustainable energy technologies, where their protón exchange membranes continue to be a key component with many challenges and opportunities ahead. In this study, different indazole- and benzotriazolebisphosphonic acids were prepared and incorporated into new Nafion-doped membranes up to a 5 wt% loading. The new membranes were characterised, and their proton conductivities were evaluated using electrochemical impedance spectroscopy. Membranes with a 1 wt% loading showed better proton conductivities than Nafion N-115 at all temperature and under relative humidity conditions studied. In these conditions, the best value was observed for the membrane doped with [hydroxy(1H-indazol-3-yl)methanediyl]bis(phosphonic acid) (BP2), with a proton conductivity of 98 mS cm-1. Activation energy (Ea) values suggests that both Grotthuss and vehicular mechanisms are involved in the proton conduction across the membrane.