电化学剥离石墨作为锂离子电池阳极的高效导电添加剂

Dong Seok Kim, Jea Uk Lee, Sung Hyun Kim, Jin-Yong Hong
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引用次数: 0

摘要

在本研究中,评估了使用电化学方法大量生产的剥离石墨(EG)制造的阳极的电化学特性,以验证EG作为导电添加剂的潜力。EG由于在二维平面上的sp2键合而表现出高电导率;这种导电性提供了稳定的电通路并促进了阳极中的电子转移。此外,EG中少量的石墨烯层提供了优异的机械性能(弹性模量、拉伸强度),这抑制了锂化过程中阳极的体积膨胀;因此,EG基阳极表现出高容量保持率和充电/放电循环稳定性。与传统导电添加剂相比,具有大比表面积的EG通过将添加剂的量减少70%以上并且同时增加活性材料的量来提高能量密度。电极的容量为3.0 重量百分比EG达到376 mAh/g,即使在0.2下200次循环后 C和其初始可逆容量的99%。电极的速率性能为3.0 重量百分比EG约为370 5.0时mAh/g C.这些结果证实EG可以用作导电添加剂以克服现有商业导电剂的局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Electrochemically exfoliated graphite as a highly efficient conductive additive for an anode in lithium-ion batteries

Electrochemically exfoliated graphite as a highly efficient conductive additive for an anode in lithium-ion batteries

In this study, the electrochemical characteristics of an anode fabricated using exfoliated graphite (EG), which is mass-produced using an electrochemical method, are evaluated to verify the potential of EG as a conductive additive. EG exhibits high electrical conductivity because of the sp2 bonding on the two-dimensional plane; this conductivity provides a stable electrical pathway and promotes electron transfer in the anode. Furthermore, the small number of graphene layers in EG provide excellent mechanical properties (elastic modulus, tensile strength), which suppresses the volume expansion of the anode during lithiation; therefore, EG-based anode exhibits high capacity retention and charge/discharge cycle stability. The EG with a large specific surface area improves energy density by decreasing the amount of the additive by more than 70% compared to conventional conductive additives and by simultaneously increasing the amount of the active material. The capacity of the electrode with 3.0 wt% EG reaches 376 mAh/g even after 200 cycles at 0.2 C and 99% of its initial reversible capacity. The rate performance of the electrode with 3.0 wt% EG was about 370 mAh/g at 5.0 C. These results confirm that EG can be used as a conductive additive to overcome the limitations of existing commercial conductive agents.

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