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Bismuth oxide as an excellent anode additive for inhibiting dendrite formation in zinc-air secondary batteries

机译:氧化铋作为抑制锌-空气二次电池中枝晶形成的极佳阳极添加剂

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With bismuth oxide additive in zinc-air batteries anode, we have demonstrated a controlled dendrite formation at the anode surface by high current densities of 0.1 and 0.2 A/cm(2) during charging process. Cyclic voltammetry (CV) was carried out at a voltage range of -2.0 similar to 0.5 V and a scan rate of 1 mV/s to examine the electro-chemical performance of the electrode. Surprisingly, we have been able to reveal that zinc anode with 3 wt% bismuth oxide showed cathodic peaks after 20 cycles with no noticeable loss in performance. Structural characterization via FE-SEM images revealed that 3-dimensional spherical morphology was formed with bismuth oxide at a current density of 0.05 A/cm(2) under controlled kinetics. We have no doubt that our additive successfully mitigated the formation of dendrite at the surface of the anode. Thus, we gained sufficient insight on the critical role of bismuth oxide additive to achieving a dendrite free zinc anode with a stable cycle. Hence, this anode can be use as an excellent anode material in zinc-air secondary batteries.
机译:在锌空气电池阳极中使用氧化铋添加剂,我们已证明在充电过程中通过0.1和0.2 A / cm(2)的高电流密度在阳极表面形成了受控的枝晶。在类似于0.5V的-2.0的电压范围和1mV / s的扫描速率下进行循环伏安法(CV),以检查电极的电化学性能。令人惊讶地,我们已经能够揭示具有3重量%的氧化铋的锌阳极在20个循环之后显示出阴极峰,而没有明显的性能损失。通过FE-SEM图像进行结构表征显示,在受控动力学下,氧化铋在0.05 A / cm(2)的电流密度下形成了三维球形形态。毫无疑问,我们的添加剂成功地减轻了阳极表面树枝状晶体的形成。因此,我们对氧化铋添加剂在实现具有稳定循环的无枝晶锌阳极方面的关键作用获得了足够的认识。因此,该阳极可用作锌-空气二次电池中的优良阳极材料。

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