In Polymer Electrolyte Fuel Cells (PEFCs) Gas Diffusion Electrodes (GDE) are used. These electrodes traditionally consist of catalyst nanoparticles (Pt or alloys as Pt-Ru) deposited on porous and high surface carbon substrates. In this work we describe a new electrodeposition method: applying an electric field to deposit catalyst on different carbon supports, we obtain a good Pt nanoparticles distribution localized in reaction sites. Chemical analysis, cyclic voltammetry (CV) and FEG-SEM technique are used to determine electrochemical characteristics of Pt deposit and the influence of electrodeposition method on the nano-morphology. Electrocatalytic performances were carried out by oxygen reduction reaction (ORR) and methanol oxidation reaction (MOR) in H2SO4, re-calculating data in the form of mass specific activity (MSA) and surface specific activity (SSA) to take in account the real electrochemical surface of Pt loading. A comparison with commercial Pt/C catalysts shows an higher activity, at lower Pt loading, for our materials.

Development and characterisation of electrocatalysts for polymer electrolyte fuel cells / Pasquali, Mauro; C., Paoletti; A., Cemmi; L., Giorgi; L., Pilloni. - STAMPA. - 8(2005), pp. 2001-2006.

Development and characterisation of electrocatalysts for polymer electrolyte fuel cells

PASQUALI, Mauro;
2005

Abstract

In Polymer Electrolyte Fuel Cells (PEFCs) Gas Diffusion Electrodes (GDE) are used. These electrodes traditionally consist of catalyst nanoparticles (Pt or alloys as Pt-Ru) deposited on porous and high surface carbon substrates. In this work we describe a new electrodeposition method: applying an electric field to deposit catalyst on different carbon supports, we obtain a good Pt nanoparticles distribution localized in reaction sites. Chemical analysis, cyclic voltammetry (CV) and FEG-SEM technique are used to determine electrochemical characteristics of Pt deposit and the influence of electrodeposition method on the nano-morphology. Electrocatalytic performances were carried out by oxygen reduction reaction (ORR) and methanol oxidation reaction (MOR) in H2SO4, re-calculating data in the form of mass specific activity (MSA) and surface specific activity (SSA) to take in account the real electrochemical surface of Pt loading. A comparison with commercial Pt/C catalysts shows an higher activity, at lower Pt loading, for our materials.
2005
Chemical Engineering Transactions
8890191503
02 Pubblicazione su volume::02a Capitolo o Articolo
Development and characterisation of electrocatalysts for polymer electrolyte fuel cells / Pasquali, Mauro; C., Paoletti; A., Cemmi; L., Giorgi; L., Pilloni. - STAMPA. - 8(2005), pp. 2001-2006.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/164858
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