Graphene Enables Aluminum Current Collectors of 5
V Class Battery
Posted on 2024-09-26 - 12:41
The
five volt-class battery is one promising candidate of high
energy density lithium-ion batteries. However, it suffers from limited
electrochemical performance due to many problems, one of which is
Al current collector corrosion. The corrosion greatly affects the
electrochemical performance of batteries, so uncovering the Al corrosion
mechanism and developing its protection strategy in the 5 V-class
battery becomes important. Here, we experimentally realize a corrosion-resistant
Al current collector via graphene protection. The experimental and
theoretical calculation indicate that graphene can work as a physical
barrier to inhibit direct contact between LiPF6-based electrolyte
and an Al current collector, reducing the side reactions between Al
current collector and HF originated from electrolyte. What is more,
graphene increases the Al corrosion reaction potential, raising the
difficulty of electrochemical corrosion. These effects improve the
electrochemical performance of the 5 V-class battery, especially the
rate performance and cycling stability. The work is beneficial for
the development of a 5 V-class battery.
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Shi, Xiaowei; Zhang, Yan; Zhang, Huandi; Zhao, Zehua; Liu, Bihe; Liu, Jiamei; et al. (2024). Graphene Enables Aluminum Current Collectors of 5
V Class Battery. ACS Publications. Collection. https://doi.org/10.1021/acs.nanolett.4c02772