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A Dual-Ion Battery Constructed with Aluminum Foil Anode and Mesocarbon Microbead Cathode via an Alloying/ Intercalation Process in an Ionic Liquid Electrolyte

机译:在离子液体电解质中通过合金化/嵌入工艺由铝箔阳极和中碳微珠阴极构成的双离子电池

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摘要

A novel dual-ion battery constructed with aluminum foil anode and mesocarbon microbead (MCMB) cathode based on a lithium-salt containing ionic liquid electrolyte is prepared. The working mechanism of this Al-MCMB dualion battery is demonstrated to be intercalation/deintercalation of anions into/ from the MCMB cathode and AlLi alloying/dealloying at the Al anode. Owing to the good stability of ionic liquid at high working voltage and the protection of fluoroethylene carbonate additive in the electrolyte by forming stable solid electrolyte interphase film on the Al foil, the battery presents superior cycling stability at high cut-off voltage of 4.8 V with a reversible capacity of 98 mAh g~(?1) after 300 cycles at 0.5 C with negligible decay. Moreover, as the Al foil is directly utilized as both anode material and current collector, the energy density of the packaged Al-MCMB cell can be further increased, which is estimated to be 221 W h kg~(?1) at the power density of 109 W kg~(?1) and remains 185 W h kg~(?1) at 1141 W kg~(?1), much better than most commercial lithium-ion batteries.
机译:制备了一种新型的双离子电池,该电池由铝箔阳极和基于含锂盐的离子液体电解质的中碳微珠(MCMB)阴极构成。事实证明,这种Al-MCMB双离子电池的工作机制是:将阴离子嵌入MCMB阴极/从MCMB阴极嵌入/脱嵌,以及在Al阳极处进行AlLi合金化/脱合金。由于离子液体在高工作电压下具有良好的稳定性,并且通过在铝箔上形成稳定的固态电解质中间膜,从而保护了电解质中的氟代碳酸亚乙酯添加剂,因此该电池在4.8 V的高截止电压下表现出优异的循环稳定性。在0.5 C下300次循环后,可逆容量为98 mAh g〜(?1),衰减可忽略不计。此外,由于将铝箔直接用作负极材料和集电器,因此可以进一步提高封装的Al-MCMB电池的能量密度,在功率密度下估计为221 W h kg〜(?1)。功率为109 W kg〜(?1),在1141 W kg〜(?1)时仍为185 W h kg〜(?1),比大多数商用锂离子电池好得多。

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