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首页> 外文期刊>Journal of power sources >Effects of cationic CTAB and anionic SDBS surfactants on the performance of Zn-MnO_2 alkaline batteries
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Effects of cationic CTAB and anionic SDBS surfactants on the performance of Zn-MnO_2 alkaline batteries

机译:阳离子CTAB和阴离子SDBS表面活性剂对Zn-MnO_2碱性电池性能的影响。

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摘要

Inhibiting properties of two kinds of surfactant, cationic cetyl trimethyl ammonium bromide (CTAB) and anionic sodium dodecyl benzene sulfonate (SDBS) with three different concentrations, in relation to zinc passivation have been explained in the primary Zn/MnO_2 alkaline batteries. Discharge performance of alkaline cell affected by utilization of surfactant in anodic gel. Therefore, electrochemical properties of anodic zinc have been investigated by cyclic voltammetry, X-ray diffraction, scanning electron microscopy (SEM) and ac impedance techniques. The results show that alkaline cell with 0.01 g l~(-1) of anionic SDBS surfactant decreased effectively the rate of zinc-passivation reaction. Also, it exhibited ZnO morphology with smaller grain size, causing longer service life gradually, step by step. By contrast, 0.01 g l~(-1) of cationic CTAB surfactant remarkably increased the rate of charge transfer and mass transfer in the alkaline cell, on impedance data. Consequently, more volumetric energy density obtained in first discharge step due to more activated zinc surface area. Furthermore, scanning electron microscopy (SEM) has shown non-homogenous morphology with coarse ZnO growth. This was confirmed by X-ray diffractograms showing the highest intensity of ZnO peak. When the concentration of these surfactants (CTAB and SDBS) increased, more inhibiting properties were observed. This property was stronger in the cells with anionic SDBS surfactant. Our study is mainly focused on the understanding the mechanism of zinc passivation in the presence of the surfactants.
机译:在一次Zn / MnO_2碱性电池中,已经解释了三种不同浓度的阳离子表面活性剂阳离子十六烷基三甲基溴化铵(CTAB)和十二烷基苯磺酸钠阴离子(SDBS)对锌的钝化性能。阳极凝胶中表面活性剂的利用影响了碱性电池的放电性能。因此,已通过循环伏安法,X射线衍射,扫描电子显微镜(SEM)和交流阻抗技术研究了阳极锌的电化学性能。结果表明,含有0.01 g l〜(-1)阴离子SDBS表面活性剂的碱性电池有效降低了锌钝化反应的速率。而且,它表现出具有较小晶粒尺寸的ZnO形态,逐步逐步延长了使用寿命。相比之下,基于阻抗数据,0.01 g l〜(-1)的阳离子CTAB表面活性剂显着提高了碱性电池中电荷转移和质量转移的速率。因此,由于更多的活化锌表面积,在第一放电步骤中获得了更多的体积能密度。此外,扫描电子显微镜(SEM)显示出具有不均匀的形貌,并具有粗大的ZnO生长。 X射线衍射图显示了最高的ZnO峰强度,证实了这一点。当这些表面活性剂(CTAB和SDBS)的浓度增加时,观察到更多的抑制性能。在具有阴离子SDBS表面活性剂的电池中,该性能更强。我们的研究主要集中在理解表面活性剂存在下锌钝化的机理。

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