首页> 外文期刊>Chinese Journal of Chemical Engineering >Electrochemical Performance of Zn(002) and Zn(100) Single Crystals in 6.0mol·L~(-1) KOH
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Electrochemical Performance of Zn(002) and Zn(100) Single Crystals in 6.0mol·L~(-1) KOH

机译:Zn(002)和Zn(100)单晶在6.0mol·L〜(-1)KOH中的电化学性能

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摘要

In this article, the electrochemical performance of the electrodes of zinc polycrystal, Zn(002) and Zn(100) single crystals were studied by the Tafel line extrapolation of the potentio-dynamic polarization curves, the cyclic voltammetry and the charge/discharge experiment. The results shows that in 6.0 mol·L~(-1) KOH solution the corrosion rate of Zn polycrystal, Zn(100) and Zn(002) single crystals decreases in turn; and the reversibility and the charge/discharge performance of Zn single crystal was superior to Zn polycrystal. The dendrite growth of the surface of Zn polycrystal was easier than Zn single crystal during the stages of charge/discharge.
机译:本文通过电位动态极化曲线的Tafel线外推法,循环伏安法和充放电实验研究了锌多晶,Zn(002)和Zn(100)单晶电极的电化学性能。结果表明,在6.0mol·L〜(-1)KOH溶液中,Zn多晶,Zn(100)和Zn(002)单晶的腐蚀速率依次降低; Zn单晶的可逆性和充放电性能优于Zn多晶。在充电/放电阶段,Zn多晶表面的枝晶生长比Zn单晶容易。

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