首页> 外文期刊>Journal of new materials for electrochemical systems >Electrochemical Characterization of IrO_2-Pt and RuO_2-Pt Mixtures as Bifunctional Electrodes for Unitized Regenerative Fuel Cells
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Electrochemical Characterization of IrO_2-Pt and RuO_2-Pt Mixtures as Bifunctional Electrodes for Unitized Regenerative Fuel Cells

机译:IrO_2-Pt和RuO_2-Pt混合物作为组合式可再生燃料电池双功能电极的电化学表征

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摘要

Unitized Regenerative fuel Cell (URFC) is an attractive and efficient method for producing hydrogen and clean energy. Nevertheless, to combine a polymer electrolyte water electrolyzer (PEMWE) and a polymer electrolyte fuel cell (PEMFC) is still a big challenge. Here, it is necessary to overcome several practical and structural features. For instance, the oxygen reduction (ORR) and the water oxidation (OER) are the limiting reaction steps at the oxygen electrode for PEMFC or PEMWE, respectively. Therefore, its high-efficiency depends on the type of electrocatalysts and the capability of the oxygen electrode to operate under the PEMFC or PEMWE conditions. As a consequence, a broad research is focused on developing a new design for the oxygen electrode in. URFCs. In this work, several bifunctional electrodes for OER and ORR were designed by mixing electrocatalysts of Pt and IrO_2 or Pt and RuO_2supported on Ebonex?. Electrochemical characterization by CV, LV and EIS in aqueous 0.5 M H_2SO_4 reveals that IrO_2-Pt and RuO_2-Pt supported on Ebonex?, exhibit high electrocatalytic properties for ORR and OER showing up a possible use in URFCs. In addition, IrO_2 based electrodes display a higher stability than those based on RuO_2.
机译:单元式再生燃料电池(URFC)是一种有吸引力的高效方法,可生产氢气和清洁能源。然而,将聚合物电解质水电解槽(PEMWE)和聚合物电解质燃料电池(PEMFC)结合起来仍然是一个很大的挑战。在这里,有必要克服一些实际和结构上的特征。例如,氧还原(ORR)和水氧化(OER)分别是PEMFC或PEMWE氧电极上的限制性反应步骤。因此,其高效率取决于电催化剂的类型以及氧电极在PEMFC或PEMWE条件下运行的能力。因此,广泛的研究集中在为URFC中的氧电极开发一种新设计。在这项工作中,通过混合负载在Ebonex?上的Pt和IrO_2或Pt和RuO_2的电催化剂,设计了几种OER和ORR双功能电极。在0.5 M H_2SO_4水溶液中通过CV,LV和EIS进行的电化学表征表明,负载在Ebonex?上的IrO_2-Pt和RuO_2-Pt对ORR和OER表现出高电催化性能,显示出在URFC中的可能用途。此外,基于IrO_2的电极显示出比基于RuO_2的电极更高的稳定性。

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