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Enhanced Cycling Performance of Rechargeable Zinc–Air Flow Batteries Using Potassium Persulfate as Electrolyte Additive

机译:使用过硫酸钾作为电解质添加剂提高可充电锌空气流电池的循环性能

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摘要

Zinc–air batteries (ZABs) offer high specific energy and low-cost production. However, rechargeable ZABs suffer from a limited cycle life. This paper reports that potassium persulfate (KPS) additive in an alkaline electrolyte can effectively enhance the performance and electrochemical characteristics of rechargeable zinc–air flow batteries (ZAFBs). Introducing redox additives into electrolytes is an effective approach to promote battery performance. With the addition of 450 ppm KPS, remarkable improvement in anodic currents corresponding to zinc (Zn) dissolution and limited passivation of the Zn surface is observed, thus indicating its strong effect on the redox reaction of Zn. Besides, the addition of 450 ppm KPS reduces the corrosion rate of Zn, enhances surface reactions and decreases the solution resistance. However, excess KPS (900 and 1350 ppm) has a negative effect on rechargeable ZAFBs, which leads to a shorter cycle life and poor cyclability. The rechargeable ZAFB, using 450 ppm KPS, exhibits a highly stable charge/discharge voltage for 800 cycles. Overall, KPS demonstrates great promise for the enhancement of the charge/discharge performance of rechargeable ZABs.
机译:锌 - 空气电池(ZABs)提供高的特定能源和低成本生产。然而,可充电ZAB患有有限的循环寿命。本文报道说,碱性电解质中的过硫酸钾(KPS)添加剂可以有效地提高可充电锌空气电池(ZAFBS)的性能和电化学特性。将氧化还原添加剂引入电解质是一种促进电池性能的有效方法。随着450ppm KPS的添加,观察到对应于锌(Zn)溶解的阳极电流和Zn表面有限钝化的显着改善,从而表明其对Zn的氧化还原反应的强作用。此外,添加450ppm的KPS降低了Zn的腐蚀速率,增强了表面反应并降低了溶液电阻。然而,过量的KPS(900和1350ppm)对可充电ZAFB具有负面影响,这导致循环寿命较短,可循环性差。使用450ppm kps的可充电Zafb表现出800个循环的高度稳定的充电/放电电压。总体而言,KPS展示了提高可充电ZAB的充电/放电性能的巨大希望。

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