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Electrochemical study of platinum deposited by electron beam evaporation for application as fuel cell electrodes
Authors:M.A. Raso  I. Carrillo  E. Mora  E. Navarro  M.A. Garcia  T.J. Leo
Affiliation:1. Fac. CC. Químicas – Universidad Complutense de Madrid, Avda. Complutense 18, 28040 Madrid, Spain;2. ETS Ingeniería y Diseño Industrial – Universidad Politécnica de Madrid, C/. Ronda de Valencia 3, 28012 Madrid, Spain;3. ETSI Navales – Universidad Politécnica de Madrid, Avda. Arco de la Victoria 4, 28040 Madrid, Spain;4. ETSI Aeronáuticos – Universidad Politécnica de Madrid, Pza. Cardenal Cisneros 3, 28040 Madrid, Spain;5. Instituto de Ceramica y Vidrio & IMDEA Nanociencia, C/Kelsen 5, Campus de la UAM, Cantoblanco, 28049 Madrid, Spain
Abstract:Platinum is the most used catalyst in electrodes for fuel cells due to its high catalytic activity. Polymer electrolyte and direct methanol fuel cells usually include Pt as catalyst in their electrodes. In order to diminish the cost of such electrodes, different Pt deposition methods that permit lowering the metal load whilst maintaining their electroactivity, are being investigated. In this work, the behaviour of electron beam Pt (e-beam Pt) deposited electrodes for fuel cells is studied. Three different Pt loadings have been investigated. The electrochemical behaviour by cyclic voltammetry in H2SO4, HClO4 and in HClO4 + MeOH before and after the Pt deposition on carbon cloth has been analysed. The Pt improves the electrochemical properties of the carbon support used. The electrochemical performance of e-beam Pt deposited electrodes was finally studied in a single direct methanol fuel cell (DMFC) and the obtained results indicate that this is a promising and adequate method to prepare fuel cell electrodes.
Keywords:Platinum   Cyclovoltammetry   e-Beam evaporation   Electrode preparation   PEMFC   DMFC
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