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首页> 外文期刊>Scientific reports. >The Influence of Dimethyl Sulfoxide as Electrolyte Additive on Anodic Dissolution of Alkaline Zinc-Air Flow Battery
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The Influence of Dimethyl Sulfoxide as Electrolyte Additive on Anodic Dissolution of Alkaline Zinc-Air Flow Battery

机译:二甲基亚甲醚作为电解质添加剂对碱性锌 - 空气流电池阳极溶解的影响

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The present work describes the effects of dimethyl sulfoxide (DMSO) in KOH aqueous electrolyte on the performance of a zinc-air flow battery. Aqueous electrolytes containing 7 M KOH and (0 to 20)% v/v DMSO were studied revealing a critical role of DMSO on the dissolution and deposition of zinc. The anodic zinc dissolution process was studied via cyclic voltammetry, Tafel polarization and electrochemical impedance spectroscopy (EIS). The presence of DMSO showed improved zinc dissolution performance with the highest peak of zinc dissolution being the electrolyte containing 5% v/v DMSO. Tafel analysis demonstrated a significant decrease in polarization resistance and an increase in corrosion rate due to the introduction of DMSO to the electrolyte. This suggests that DMSO has the ability to suspend zinc oxide in the electrolyte, thus preventing passivation of the zinc surface. EIS results revealed that by adding DMSO to the electrolyte, charge transfer resistance increased. This is attributed to the formation of passive layers having arisen from DMSO adsorption, the formation of zincate ions in the vicinity of the zinc surface, and the deposition of discharged products. A difference in Nyquist plots was observed for 20% v/v DMSO/KOH and 0% v/v DMSO/KOH electrolytes implying non-Debye relaxation behavior taking place due to the surface effects. The electrolytes were implemented in a zinc-air flow battery. Maximum power densities of 130 mW/cmsup2/sup (5% v/v DMSO) and 125 mW/cmsup2/sup (20% v/v DMSO) were obtained and were observed to be about 43% and 28% higher than that of the DMSO-free electrolyte. Results indicated that when 20% v/v DMSO was added to KOH solution, there was 67% zinc utilization efficiency (550 mAh/g) which provided 20% improvement in discharge capacity. Further, the battery with 20% v/v DMSO demonstrated excellent cyclability. Overall, DMSO shows great promise for enhancement of zinc dissolution/deposition in zinc-air batteries.
机译:本作者描述了二甲基亚砜(DMSO)在KOH含水电解质上对锌 - 空气流电池性能的影响。研究了含有7M KOH和(0至20)%V / V DMSO的水性电解质,揭示DMSO对锌的溶解和沉积的关键作用。通过循环伏安法,Tafel偏振和电化学阻抗光谱(EIS)研究阳极锌溶解过程。 DMSO的存在显示出改善的锌溶解性能,锌溶解的最高峰是含有5%V / V DMSO的电解质。 Tafel分析表明,由于将DMSO引入电解质,抗腐蚀性的显着降低和腐蚀速率的增加。这表明DMSO能够悬浮电解质中的氧化锌,从而防止锌表面的钝化。 EIS结果显示,通过向电解液添加DMSO,电荷转移电阻增加。这归因于从DMSO吸附中出现的被动层的形成,在锌表面附近形成锌酸锌离子,以及排出产品的沉积。观察到奈奎斯特图的差异为20%v / v DMSO / KOH和0%v / v DMSO / KOH电解质,暗示由于表面效应而发生的非德语松弛行为。电解质在锌气流电池中实施。获得了最大功率密度为130mW / cm 2 (5%v / v dmso)和125mw / cm 2 (20%v / v dmso),并被观察到比无DMSO的电解质高约43%和28%。结果表明,当向KOH溶液中加入20%V / V DMSO时,锌利用效率(550mAh / g)含有67%的放电能力提高。此外,具有20%V / V DMSO的电池显示出优异的可循环性。总体而言,DMSO对锌 - 空气电池中的锌溶解/沉积提高了良好的通知。

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