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Water-suspended graphene as electrolyte additive in zinc-air alkaline battery system

机译:锌空气碱电池系统中悬浮的石墨烯作为电解质添加剂

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Zinc-air (Zn-air) batteries possess high-energy density due to surplus air involved in reduction reaction at air cathode and are an important energy source used for automobiles and grid storage. In this study, the scope of improvements in the efficiency of Zn-air batteries are investigated through addition of water-soluble graphene (WSG) as a corrosion inhibitor in 1M KOH electrolyte. Phase and microstructure analysis for the synthesized WSG shows the formation of few layers of graphene due to the presence of an intense XRD peak of carbon at 26.3 degrees and the flake-like structure confirmed by SEM. The discharge capacity, corrosion behavior, and electrochemical impedance analysis performed on conventional Zn-air battery shows improved performance when tested with WSG as an additive in 1M KOH electrolyte. Results from short-circuit test show that immersion of WSG in 1M KOH electrolyte increased the current density from 20.3 to 26.43mAcm(-2). Whereas, galvanostatic discharge measurement reveals that Zn-air battery in WSG added with 1M KOH electrolyte has a specific discharge capacity of similar to 212.6mAhg(-1) higher than that obtained in 1M KOH electrolyte (similar to 160.4mAhg(-1)).Overall, the WSG-based Zn-air battery shows good self-discharge capacity and higher electrochemical activity during discharge holds promise as an electrolyte additive for Zn-air system.
机译:锌 - 空气(Zn-Air)电池由于空气阴极还原反应中的剩余空气而具有高能量密度,并且是用于汽车和网格储存的重要能源。在该研究中,通过在1M KOH电解质中添加水溶性石墨烯(WSG)作为腐蚀抑制剂,研究了Zn-Air电池效率的改进范围。合成的WSG的相和微观结构分析表明,由于在26.3度的碳的强度XRD峰值存在并且通过SEM确认的薄片状结构,由于存在少量石墨烯的形成。在传统Zn-Abile电池上进行的放电容量,腐蚀行为和电化学阻抗分析显示用WSG作为1M KOH电解质中的添加剂测试时的改善的性能。短路试验结果表明,1M KOH电解质中的WSG浸没从20.3至26.43macm(-2)的电流密度增加。虽然,镀锌静电放电测量揭示了用1M KOH电解质加入的WSG中的Zn-Abile电池的特定放电容量与1M KOH电解质中获得的212.6mAhg(-1)相似(类似于160.4mAhg(-1)) .Overall,基于WSG的Zn-Abile电池显示出良好的自放电容量和放电期间更高的电化学活性,并作为Zn-Air系统的电解质添加剂保持承担。

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