Platinum and Ruthenium nanoparticles decorated multi walled carbon nanotubes as electrodes for polymer electrolyte membrane fuel cells

Multi wall carbon nanotubes were decorated with Platinum (MWCN-Pt) and Ruthenium (MWCN-Ru) nanoparticles. These catalytic metal nanoparticles were grown directly on oxidized surface of carbon nanotubes by reduction of metal precursors. Pt- and Ru-nanoparticles decorated MWCN were used to fabricate t...

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Veröffentlicht in:Diamond and related materials 2009-02, Vol.18 (2), p.497-500
Hauptverfasser: Somani, Savita P., Somani, Prakash R., Sato, A., Umeno, M.
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Sprache:eng
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Zusammenfassung:Multi wall carbon nanotubes were decorated with Platinum (MWCN-Pt) and Ruthenium (MWCN-Ru) nanoparticles. These catalytic metal nanoparticles were grown directly on oxidized surface of carbon nanotubes by reduction of metal precursors. Pt- and Ru-nanoparticles decorated MWCN were used to fabricate the electrodes for Polymer Electrolyte Membrane Fuel Cells (PEMFC) using Nafion as proton transporting membrane. The fabricated Membrane-Electrode-Assembly (MEA) has been tested for its performance with humidified H 2 and O 2 as input fuels at room temperature. Active area of the MEAs fabricated is kept constant at 6.25 cm 2. Maximum power obtained from PEMFC using MWCN-Pt based electrodes (both anode and cathode) was about 340 mW while the maximum open circuit voltage (OCV) obtained was 0.87 V. PEMFC made using a mixture of MWCN-Pt and MWCN-Ru as electrodes yield maximum power of 225 mW.
ISSN:0925-9635
1879-0062
DOI:10.1016/j.diamond.2008.10.042