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The Roles of Alkyl Branches of Ionic Liquid in the Corrosion Resistance of Pb/Sb/Sn Grids Alloy in Lead-Acid Battery

机译:离子液体烷基分支在铅酸电池中Pb / Sb / Sn栅格合金耐腐蚀性的作用

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摘要

This paper describes the effects of ionic liquids (ILs) including mono, bicyclohexyl, and tetrahexyl ammonium hydrogen sulphate on the corrosion behaviour of Pb/Sb/Sn grids alloy of lead-acid battery with Pb, Sb (1.66 wt%), and Sn (0.24 wt%). Electrochemical behaviour has been investigated using Tafel plots and electrochemical impedance spectroscopy with various concentrations of ILs as electrolyte additives in 4.0 mol⋅L-1 sulphuric acid. The obtained results indicated that, by increasing number of alkyl or cycloalkyl branches in ILs, the corrosion rate of the lead alloy decreases, whereas inhibition efficiency shows a reverse effect. In the presence of all ILs in different concentrations, conversion current of PbSO4 to PbO2 (ia and ic) increases, while the reversibility, deduced from peak potential differences, decreases. Also, the effect of ILs adsorption model on the corrosion behaviour of electrode was proposed.
机译:本文介绍了离子液体(ILS)在具有PB,Sb(1.66wt%)和Sn的Pb / Sb / Sn栅格硫酸盐对铅酸电池PB / Sb / Sn栅极合金的腐蚀行为的影响(0.24wt%)。已经使用Tafel Plot和电化学阻抗光谱研究了电化学行为,以各种浓度的ILS作为4.0mol = 1-1硫酸中的电解质添加剂。所得结果表明,通过越来越多的IL中的烷基或环烷基分支,铅合金的腐蚀速率降低,而抑制效率显示出逆转效果。在不同浓度的所有IL的存在下,PBO4至PbO2(IA和IC)的转化电流增加,而从峰值电位差异推导的可逆性降低。而且,提出了ILS吸附模型对电极腐蚀行为的影响。

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