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Novel alloys to improve the electrochemical behavior of zinc anodes for zinc/air battery

机译:新型合金,可改善用于锌/空气电池的锌阳极的电化学行为

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In our continued efforts for improving the performance of zinc anodes for a Zn/air battery, we now report the preparation of three alloys and improved performances of anodes made up with these alloys. The alloys contained zinc, nickel, and indium with different weight percentages and were calcined at two different temperatures. Out of the six alloys, the alloy which has a composition of zinc 90 percent, nickel 7.5 percent and Indium 2.5 percent and fired at 500 deg C is found to be the best. In the case of the hydrogen evolution reaction, this alloy had its potential shifted to a more negative potential. As far as the cyclic voltammograms were concerned, the difference between the anodic and cathodic part was minimal when compared with other alloys. Surprisingly, this alloy had reversibility even after 100 cycles of the cyclic voltammogram. This is a clear indication that dendrite formation was reduced to a considerable extent. Images taken with a scanning electron microscope also indicated reduced dendrite formation.
机译:在我们不断努力改善用于Zn /空气电池的锌阳极性能方面,我们现在报告了三种合金的制备以及由这些合金制成的阳极性能的改善。该合金包含不同重量百分比的锌,镍和铟,并在两个不同的温度下煅烧。在这六种合金中,具有90%的锌,7.5%的镍和2.5%的铟的成分并且在500摄氏度下煅烧的合金是最好的。在发生放氢反应的情况下,该合金的电势转移到了更负的电势。就循环伏安图而言,与其他合金相比,阳极部分和阴极部分之间的差异很小。出人意料的是,即使在100次循环伏安图之后,该合金也具有可逆性。这清楚地表明枝晶的形成被大大减少。用扫描电子显微镜拍摄的图像也表明减少了枝晶形成。

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