Title of article :
PtSnCe/C electrocatalysts for ethanol oxidation: DEFC and FTIR “in-situ” studies
Author/Authors :
De Souza، نويسنده , , R.F.B. and Parreira، نويسنده , , Jadielson L.S. and Silva، نويسنده , , J.C.M. and Simُes، نويسنده , , F.C. and Calegaro، نويسنده , , M.L. and Giz، نويسنده , , M.J. and Camara، نويسنده , , G.A. and Neto، نويسنده , , A.O. dos Santos، نويسنده , , M.C.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2011
Abstract :
The ethanol oxidation reaction (EOR) was investigated using PtSnCe/C electrocatalysts in different mass ratios (72:23:5, 68:22:10 and 64:21:15) that were prepared by the polymeric precursor method. Transmission electron microscopy (TEM) showed that the particles ranged in size from approximately 2 to 5 nm. Changes in the net parameters observed for Pt suggest the incorporation of Sn and Ce into the Pt crystalline network with the formation of an alloy between Pt, Sn and/or Ce. Among the PtSnCe catalysts investigated, the 68:22:10 composition showed the highest activity toward ethanol oxidation, and the current–time curves obtained in the presence of ethanol in acidic media showed a current density 50% higher than that observed for commercial PtSn/C (E-Tek). During the experiments performed on single direct ethanol fuel cells, the power density for the PtSnCe/C 68:22:10 anode was nearly 40% higher than the one obtained using the commercial catalyst. Data from Fourier transform infrared (FTIR) spectroscopy showed that the observed behavior for ethanol oxidation may be explained in terms of a double mechanism. The presence of Sn and Ce seems to favor CO oxidation, since they produce an oxygen-containing species to oxidize acetaldehyde to acetic acid.
Keywords :
Ethanol oxidation reaction , Electrocatalysis , Platinum–tin alloys , ceria , Polymeric precursor method
Journal title :
International Journal of Hydrogen Energy
Journal title :
International Journal of Hydrogen Energy