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首页> 外文期刊>International Journal of Electrochemical Science >Effect of Electrolyte Composition on Zn Electrode in Weak Acidic Aqueous Electrolyte
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Effect of Electrolyte Composition on Zn Electrode in Weak Acidic Aqueous Electrolyte

机译:弱酸性水电解质中电解质组成对锌电极的影响

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The electrochemical behavior of zinc and polyaniline (PANI) obtained by the oxidative polymerizationof aniline in 1.0 M aqueous HC1 by (NH4)2S2O8 were investigated in ZnCl2 + NH4Cl (chlorideelectrolyte), (NH4)2SO4 + ZnSO4 (sulfuric acid electrolyte), and (NH4)2SO4 + ZnSO4 + (CH3COO)2Pb( acetic acid electrolyte) with the addition of Na-citrate and Na-malonate. Compared with sulfuric acidelectrolyte and acetic acid electrolyte, zinc electrode shows the minimum of charge transfer resistance(Rct) and lower corrosion current densities, and polyaniline (PANI) keep high electrochemical activityin the chloride electrolyte at pH 4.0. The formation of zinc dendrite and the hydrogen evolution of thezinc electrode were suppressed in chloride electrolyte. The potentials were limited to 1.5 V for charge-1 and to 0.7 V for discharge at 50 mA g , obtained the initial discharge specific capacity of 109.5 mAh-1 g , the columbic efficiency remained at around 100% after 1000 times charge-discharge cycles.
机译:研究了在ZnCl2 + NH4Cl(氯化物电解质),(NH4)2SO4 + ZnSO4(硫酸电解质)和( NH4)2SO4 + ZnSO4 +(CH3COO)2Pb(乙酸电解质),同时添加柠檬酸钠和丙二酸钠。与硫酸电解质和乙酸电解质相比,锌电极具有最小的电荷转移电阻(Rct)和较低的腐蚀电流密度,而聚苯胺(PANI)在pH 4.0的氯化物电解质中保持较高的电化学活性。在氯化物电解质中抑制了锌枝晶的形成和锌电极的氢逸出。充电1时电势限制为1.5 V,以50 mA g放电时电势限制为0.7 V,获得的初始放电比容量为109.5 mAh-1 g,经过1000次充放电循环后,哥伦布效率保持在100%左右。

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