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Experimental investigation on the effect of mixed acids etched nickel foam electrode on performance of an alkaline direct ethanol fuel cell

机译:混合酸蚀刻镍泡沫电极对碱性直接乙醇燃料电池性能影响的实验研究

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摘要

The three-dimensional porous materials represented by nickel foam have broad application prospects in the fuel cell field due to their excellent physical properties (high conductivity, high porosity and high specific surface area, etc.). However, the smooth nickel foam skeleton not only limits the loadable amount of active materials, but also reduces the utilization efficiency of loaded active materials. Therefore, increasing the roughness of the nickel foam skeleton to improve the utilization of active materials has far-reaching significance for the practical application. In this paper, we used mixed acids solution to etch the nickel foam and investigated the effect of etched nickel foam electrode on the performance of an alkaline direct ethanol fuel cell. It was found that mixed acids etching treatment can significantly improve the roughness of nickel foam skeleton and had a great influence on the ethanol oxidation half-reaction (EOR), while the effect on the single cell performance can negligible. Therefore, we believe that the pretreatment method of nickel foam has little effect on the performance of high loading actual electrode.
机译:由镍泡沫表示的三维多孔材料由于其优异的物理性质(高导电性,高孔隙度和高比表面积等)具有广泛的施加前景。然而,光滑的镍泡沫骨架不仅限制了可加载量的活性材料,而且还降低了负载活性材料的利用效率。因此,增加镍泡沫骨架的粗糙度,以改善活性材料的利用对实际应用具有深远的意义。在本文中,我们使用混合酸溶液蚀刻镍泡沫,并研究了蚀刻镍泡沫电极对碱性直接乙醇燃料电池性能的影响。发现混合酸蚀刻处理可以显着提高镍泡沫骨架的粗糙度,对乙醇氧化半反应(EOR)产生很大影响,而对单细胞性能的影响可以忽略不计。因此,我们认为镍泡沫的预处理方法对高负载实际电极的性能几乎没有影响。

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