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Performance and Polarization Studies of the Magnesium–Antimony Liquid Metal Battery With the use of In-Situ Reference Electrode

机译:使用原位参比电极的镁锑液态金属电池的性能和极化研究

摘要

This work presents the performance and polarization studies of a magnesium–antimony liquid metal battery with the use of an in-situ pseudo reference electrode at high operating temperature (ca. 700 °C). Due to the immiscibility of the contiguous salt and metal phases, the battery appears as three distinct layers: (1) positive electrode, (2) electrolyte and (3) negative electrode layers. The configuration of the in-situ reference electrode within the three floating liquid layers is described and is to avoid direct electrical contact/short circuit with the other electrodes. Electrochemical tests, including linear sweep voltammetry, impedance spectroscopy and galvanostatic cycling, evaluate the performance of a magnesium–antimony battery under a range of operating temperatures and current densities. Through the polarization studies, the area resistance of the negative and positive electrodes and the overall battery are found to be ca. 0.55, 0.65 and 1.20 Ω cm−2, respectively. In a typical 1 h charge/discharge per cycle experiment, average voltage efficiencies of ca. 64% are obtained at 60 mA cm−2 with a slight deterioration after subsequent cycles. In these tests, the half-cell measurements also indicate that the sprayed layer of boron nitride at the reference electrode is chemically stable and shown to be an effective electrical insulator for prolonged operation at high temperature (ca. 700 °C).
机译:这项工作介绍了在高工作温度(约700°C)下使用原位伪参比电极对镁锑液态金属电池的性能和极化研究。由于连续的盐和金属相的不溶性,电池表现为三个不同的层:(1)正极,(2)电解质和(3)负极层。描述了在三个浮动液体层内的原位参比电极的配置,并且该配置避免了与其他电极的直接电接触/短路。电化学测试,包括线性扫描伏安法,阻抗谱和恒电流循环,可评估镁锑电池在一定工作温度和电流密度下的性能。通过极化研究,发现负极和正极以及整个电池的面积电阻约为。分别为0.55、0.65和1.20Ωcm-2。在每个周期的典型1 h充电/放电实验中,平均电压效率约为。在随后的循环后,在60 mA cm-2处获得64%的样品,并稍有下降。在这些测试中,半电池测量结果还表明,参比电极上的氮化硼喷涂层化学稳定,被证明是在高温(约700°C)下长时间运行的有效电绝缘体。

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