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Polymer Electrolyte Fuel Cells Employing Heteropolyacids as Redox Mediators for Oxygen Reduction Reactions: Pt-Free Cathode Systems

机译:使用杂多酸作为氧还原反应的氧化还原介体的聚合物电解质燃料电池:无铂阴极系统

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In this study, the heteropolyacids of H3+xPVxMO12-xOx (x = 0, 2, and 3) were applied as redox mediators for the oxygen reduction reaction in polymer electrolyte fuel cells, of which the cathode is free from the usage of noble metals such as Pt/C. In this system, the electrochemical reduction of heteropolyacid over the carbon cathode and the subsequent reoxidation of the partially reduced heteropolyacid by exposure to the dissolved oxygen in the regenerator are important processes for continuous power generation. Thus, the redox properties of catholytes containing these heteropolyacids were investigated in detail. The substitution quantity of V in the heteropolyacid affected the onset reduction potential as well as the reduction current density, resulting in a difference in cell performance. The chemical composition of heteropolyacid also had a significant impact on the reoxidation property. Among the three compounds, H6PV3Mo9O40 was the most suitable redox mediator. Furthermore, the pH of the catholyte was found to be the crucial factor in determining the reoxidation rate of partially reduced heteropolyacid as well as cell performance.
机译:在这项研究中,H3 + xPVxMO12-xOx(x = 0、2和3)的杂多酸被用作聚合物电解质燃料电池中氧还原反应的氧化还原介质,其阴极不使用贵金属例如Pt / C。在该系统中,碳阴极上杂多酸的电化学还原以及随后通过暴露于再生器中的溶解氧而使部分还原的杂多酸随后再氧化是连续发电的重要过程。因此,详细研究了包含这些杂多酸的阴极电解液的氧化还原性质。 V在杂多酸中的取代量影响起始还原电位以及还原电流密度,导致电池性能的差异。杂多酸的化学组成对再氧化性能也有重要影响。在这三种化合物中,H6PV3Mo9O40是最合适的氧化还原介体。此外,发现阴极电解液的pH是确定部分还原的杂多酸的再氧化速率以及电池性能的关键因素。

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