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A concentrated electrolyte for zinc hexacyanoferrate electrodes in aqueous rechargeable zinc-ion batteries

机译:锌六氰基离子电池中锌六氰基甲醛电极的浓缩电解质

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In this study, a concentrated electrolyte was applied in an aqueous rechargeable zinc-ion battery system with a zinc hexacyanoferrate (ZnHCF) electrode to improve the electrochemical performance by changing the hydration number of the zinc ions. To optimize the active material, ZnHCF was synthesized using aqueous solutions of zinc nitrate with three different concentrations. The synthesized materials exhibited some differences in structure, crystallinity, and particle size, as observed by X-ray diffraction and scanning electron microscopy. Subsequently, these well-structured materials were applied in electrochemical tests. A more than two-fold improvement in the charge/discharge capacities was observed when the concentrated electrolyte was used instead of the dilute electrolyte. Additionally, the cycling performance observed in the concentrated electrolyte was superior to that in the dilute electrolyte. This improvement in the electrochemical performance may result from a decrease in the hydration number of the zinc ions in the concentrated electrolyte.
机译:在该研究中,浓缩电解质在具有锌氰基甲酸锌水溶液(ZnHCF)电极的水性可再充电锌离子电池系统中,以通过改变锌离子的水合数来改善电化学性能。为了优化活性材料,使用具有三种不同浓度的硝酸锌水溶液合成ZnHCF。合成材料在由X射线衍射和扫描电子显微镜观察到的情况下表现出结构,结晶度和粒度和粒度的一些差异。随后,这些结构良好的材料施用于电化学测试中。当使用浓缩电解质代替稀电解质时,观察到在充电/放电容量的两倍以上改善。另外,在浓缩电解质中观察到的循环性能优于稀释电解质中的循环性能。电化学性能的这种改进可能是由于浓缩电解质中锌离子的水合数量的降低而导致。

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