Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7731095 | Journal of Power Sources | 2015 | 8 Pages |
Abstract
Pd/C, PdAu/C 50:50, PdSn/C 50:50, PdAuSn/C 50:40:10 and PdAuSn/C 50:10:40 electrocatalysts are prepared using an electron beam irradiation reduction method and tested for glycerol electro-oxidation in alkaline medium. X-Ray diffraction (XRD), Energy dispersive X-ray analysis (EDX), Transmission electron Microscopy (TEM) and Cyclic Voltammetry (CV) are used to characterize the resulting materials. The activity for glycerol electro-oxidation is tested in alkaline medium at room temperature using Cyclic Voltammetry and Chronoamperometry (CA) and in a single alkaline direct glycerol fuel cell (ADGFC) at temperature range of 60-90 °C. EDX analysis demonstrate that Pd:Au:Sn atomic ratios are very similar to the nominal ones. X-ray diffractograms of PdAuSn/C electrocatalysts evidence the presence of Pd (fcc), Au (fcc) and SnO2 phases. TEM analysis demonstrates a good dispersion of the nanoparticles on the carbon support with some agglomerates. Cyclic Voltammetry experiments suggest that PdAuSn/C electrocatalysts demonstrate better results. In single fuel cell tests, at 85 °C, using 2.0 mol Lâ1 glycerol in 2.0 mol Lâ1 KOH solutions, the electrocatalyst PdAuSn/C 50:40:10 demonstrate highest power density (51 mW cmâ2) and the 120 h durability tests demonstrate a 210 μV hâ1 degradation rate.
Related Topics
Physical Sciences and Engineering
Chemistry
Electrochemistry
Authors
Adriana Napoleão Geraldes, Dionisio Furtunato da Silva, Leonardo Gondim de Andrade e Silva, Estevam Vitório Spinacé, Almir Oliveira Neto, Mauro Coelho dos Santos,