A PtCo catalyst was synthesized by using a specific colloidal preparation route and a carbothermal reduction at 800°C. This treatment, caused the occurrence of a primitive cubic ordered (L12) phase, and a mean crystallite size of 3.3 nm, as well as a suitable degree of alloying. The electrocatalyst was subjected to the preleaching procedure to modulate the surface characteristics. The catalyst after the carbothermal reduction at 800°C was further investigated at the cathode of a direct methanol fuel cell (DMFC). A comparison with a commercial Pt catalyst was carried out. A higher performance in DMFC was obtained by using the bimetallic PtCo catalyst.. © The Electrochemical Society.

Investigation of a cathodic bimetallic catalyst based on platinum and cobalt for application in direct methanol fuel cells

D'Urso C;Baglio V;Sebastian D;Stassi A;
2013

Abstract

A PtCo catalyst was synthesized by using a specific colloidal preparation route and a carbothermal reduction at 800°C. This treatment, caused the occurrence of a primitive cubic ordered (L12) phase, and a mean crystallite size of 3.3 nm, as well as a suitable degree of alloying. The electrocatalyst was subjected to the preleaching procedure to modulate the surface characteristics. The catalyst after the carbothermal reduction at 800°C was further investigated at the cathode of a direct methanol fuel cell (DMFC). A comparison with a commercial Pt catalyst was carried out. A higher performance in DMFC was obtained by using the bimetallic PtCo catalyst.. © The Electrochemical Society.
2013
Istituto di Tecnologie Avanzate per l'Energia - ITAE
catalysts
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/264829
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