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首页> 外文期刊>Batteries >Investigating the Impact of Particle Size on the Performance and Internal Resistance of Aqueous Zinc Ion Batteries with a Manganese Sesquioxide Cathode
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Investigating the Impact of Particle Size on the Performance and Internal Resistance of Aqueous Zinc Ion Batteries with a Manganese Sesquioxide Cathode

机译:研究粒度对七氧化锰锰水溶液对水性锌离子电池性能和内阻的影响

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摘要

Aqueous zinc ion batteries are considered to be one of the most promising battery types for stationary energy storage applications. Due to their aqueous electrolyte, they are inherently safe concerning flammability and environmentally friendly. In this work, the strong influence of the particle size of manganese sesquioxide on the performance of the battery is investigated. Ball milling was used to decrease the particle diameter. The resulting powders were used as active material for the cathodes, which were assembled in coin cells as full cells together with zinc foil anodes and aqueous electrolyte. It was shown that about one third of the original particle size can nearly triple the initial capacity when charged with constant current and constant end-of-charge voltage. Additionally, smaller particles were found to be responsible for the collapse of capacity at high current densities. By means of electrochemical impedance spectroscopy, it was shown that particle size also has a large impact on the internal resistance. Initially, the internal resistance of the cells with small particles was about half that of those with big particles, but became larger during cycling. This reveals accelerated aging processes when the reactive surface of the active material is increased by smaller particles.
机译:水性锌离子电池被认为是固定储能应用中最有前途的电池类型之一。由于使用了水性电解质,因此具有易燃性和环境友好性。在这项工作中,研究了倍半氧化锰的粒径对电池性能的强烈影响。球磨用于减小粒径。将所得粉末用作阴极的活性材料,将其与锌箔阳极和水性电解质一起组装成硬币状电池,成为完整的电池。结果表明,在恒定电流和恒定充电终止电压下充电时,原始粒度的大约三分之一可以使初始容量增加近三倍。另外,发现较小的颗粒是高电流密度下容量下降的原因。通过电化学阻抗光谱法,表明粒径也对内电阻有很大的影响。最初,具有小颗粒的电池的内阻约为具有大颗粒的电池的内阻的一半,但在循环过程中变得更大。当活性材料的反应性表面被较小的颗粒增加时,这表明加速了老化过程。

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