High performance direct ethanol fuel cell with double-layered anode catalyst layer |
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Authors: | Q. Wang G.Q. Sun L. Cao L.H. Jiang G.X. Wang S.L. Wang S.H. Yang Q. Xin |
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Affiliation: | 1. Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian, 116023, China;2. Graduate School of the Chinese Academy of Sciences, Beijing, 100039, China |
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Abstract: | Double-layered anode catalyst layers with two reverse configurations, which consist of 45 wt.% Pt3Sn/C and PtRu black catalyst layers, were fabricated to improve the performance of a direct ethanol fuel cell (DEFC). The in-house 45 wt.% Pt3Sn/C catalyst was characterized by XRD and TEM. The cross-sectional double-layered anode catalyst layer was observed by SEM. In DEFC performance test and anode linear sweep voltammetry measurement, the anode with double-layered catalyst layer exhibited better catalytic activity for ethanol electro-oxidation than those with single-layered 45 wt.% Pt3Sn/C and PtRu black catalyst layers. In terms of anode product distribution, the DEFC with double-layered anode catalyst layer showed a higher yield of acetic acid than that with single-layered PtRu black catalyst layer and a higher yield of CO2 than that with single-layered 45 wt.% Pt3Sn/C catalyst layer, respectively. These results suggest that the double-layered anode catalyst layer possessed the advantages of both Pt3Sn/C and PtRu black catalysts for ethanol electro-oxidation, and thus showed a higher ethanol electro-oxidation efficiency and DEFC performance in the practical polarization potential region. |
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Keywords: | Direct ethanol fuel cell Double-layered anode catalyst layer Pt3Sn/C catalyst PtRu black catalyst |
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