室温下空气环境下高功率密度锂-空气水电池

Q4 Energy
Hironari Minami, Hiroaki Izumi, Takumi Hasegawa, Fan Bai, Daisuke Mori, S. Taminato, Y. Takeda, O. Yamamoto, N. Imanishi
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引用次数: 1

摘要

可充电电池具有比现有锂离子电池性能更高的能量和功率密度,适合作为电动汽车的动力源。由于其1910 Wh kg-1的高能量密度,含水锂空气电池是各种电动汽车应用的候选者。本研究报告了一种室温下具有高功率密度的可充电水锂空气电池。该电池单元由锂阳极、非水阳极电解质、水稳定锂离子导电NASICON型分离器、水阴极和空气电极组成。非水电解质作为锂阳极和固体电解质之间的中间层,因为与锂接触的固体电解质是不稳定的。混合分离器由Kimwipe纸和Celgard聚丙烯膜组成,用于层间电解质,用于防止高电流密度下锂枝晶的形成。所制备的水锂-空气电池在室温下以2 mA cm-2循环6小时。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Aqueous Lithium--Air Batteries with High Power Density at Room Temperature under Air Atmosphere
Rechargeable batteries with higher energy and power density exceeding the performance of the currently available lithium-ion batteries are suitable for application as the power source in electric vehicles (EVs). Aqueous lithium-air batteries are candidates for various EV applications due to their high energy density of 1910 Wh kg-1. The present study reports a rechargeable aqueous lithium-air battery with high power density at room temperature. The battery cell comprised a lithium anode, a non-aqueous anode electrolyte, a water-stable lithium-ion-conducting NASICON type separator, an aqueous catholyte, and an air electrode. The non-aqueous electrolyte served as an interlayer between the lithium anode and the solid electrolyte because the solid electrolyte in contact with lithium was unstable. The mixed separator comprised a Kimwipe paper and a Celgard polypropylene membrane for the interlayer electrolyte, which was used for preventing the formation of lithium dendrites at a high current density. The proposed aqueous lithium-air battery was successfully cycled at 2 mA cm-2 for 6 h at room temperature under an air atmosphere.
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来源期刊
Journal of Nuclear Energy Science and Power Generation Technology
Journal of Nuclear Energy Science and Power Generation Technology Energy-Energy Engineering and Power Technology
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