首页> 外文会议>Symposium on Energy Technology / Battery-Joint General Session >Electrochemical Reactivity of magnesium ions with Sn-based binary alloys (Cu-Sn, Pb-Sn, and In-Sn)
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Electrochemical Reactivity of magnesium ions with Sn-based binary alloys (Cu-Sn, Pb-Sn, and In-Sn)

机译:镁离子与Sn基二元合金的电化学反应性(Cu-Sn,PB-Sn和In-Sn)

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摘要

We explored tin (Sn) alloys (Cu-Sn, In-Sn, Pb-Sn) as possible candidates for negative electrode materials of magnesium ion secondary batteries. Cyclic voltammograms revealed that In-Sn, Pb-Sn, and elemental Sn are active against Mg insertion and desertion at room temperature in a Grignard reagent, while Cu-Sn intermetallics are considerably inactive. Moreover, more than ten times of reversible peak currents were obtained for In-Sn and Pb-Sn alloys compared to pure Sn, suggesting the low-melting-point alloys enable the faster diffusion of Mg~(2+) ions.
机译:我们探索了锡(SN)合金(Cu-Sn,Sn-Sn,PB-Sn),作为镁离子二次电池负极材料的可能候选。循环伏安图显示,在GRIGNARD试剂的室温下,IN-SN,PB-SN和元素SN对Mg插入和遗留有效,而CU-SN金属间金属间金属间金属间隙相当无活性。此外,与纯SN相比,为IN-SN和PB-SN合金获得了超过十次可逆峰电流,表明低熔点合金使得Mg〜(2+)离子的扩散速度更快。

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