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Cell Design for Electrochemical Characterizations of Metal -Ion Batteries in Organic and Aqueous Electrolyte

机译:有机和水性电解质中金属离子电池电化学表征的电池设计

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Understanding the gas evolution in batteries, caused by decomposition of the electrolyte, is of fundamental importance for improving the long-time performances and cycle life of the battery systems. In general, this phenomenon causes simultaneously an irreversible energy and charge loss, as well as an increase of the internal resistance. Here, we introduce a new cell design capable of performing electrochemical impedance spectroscopy (EIS) and differential electrochemical mass spectroscopy (DEMS) with high resolution. Detailed aspects of the cell fabrication and the different components of the cell are extensively explained. Impedance measurements were validated by using symmetric electrodes. The possibility of performing long-term DEMS measurements was tested on graphite electrodes in Ethylene Carbonate/Dimethyl Carbonate (1:1), 1 M LiPF6 as an electrolyte. Finally, the cell was used to detect hydrogen evolution on the zinc negative electrode of a zinc-ion battery based on copper hexacyanoferrate.
机译:理解由电解质分解引起的电池中的气体逸出,对于改善电池系统的长期性能和循环寿命至关重要。通常,这种现象同时导致不可逆的能量和电荷损失,以及内部电阻的增加。在这里,我们介绍了一种新的电池设计,该电池设计能够执行高分辨率的电化学阻抗谱(EIS)和差分电化学质谱(DEMS)。电池制造的详细方面以及电池的不同组件得到了广泛的解释。阻抗测量通过使用对称电极进行验证。在碳酸亚乙酯/碳酸二甲酯(1:1),1 M LiPF6作为电解质的石墨电极上测试了进行长期DEMS测量的可能性。最后,该电池用于检测基于六氰合铁酸铜的锌离子电池的锌负极上的氢逸出。

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