A review on copper current collector used for lithium metal batteries: Challenges and strategies

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초록

Lithium (Li) metal anodes have become research hotspots due to their high theoretical specific capacity (3860 mAhg−1) and lowest REDOX potential (−3.04 V, based on the standard hydrogen electrode). When the Li metal is deposited/stripped directly on the current collector (i.e., anode-free Li metal batteries (AFLMBs)), the energy density increases compared with the graphite anodes. However, the extremely high reactivity of Li metal leads to the consumption of a large amount of inactive Li during the plating and stripping process, the growth of Li dendrites, and the formation of an unstable solid-electrolyte interface (SEI) film. Copper (Cu) was usually applied as the current collector in AFLMBs, playing a key role in Li nucleation/growth and lithium-ion flux distribution. However, the commonly used commercial Cu foil cannot meet the work needs of AFLMBs. Therefore, the modification of the Cu-based current collectors to reduce local current density, inhibit dendrite growth, and improve Coulombic efficiency (CE) has been widely studied and reported. Here, methods for modifying Cu-based current collectors are systematically summarized to guide the rational design of these modifications. Additionally, insights into the key challenges and future directions of the Cu used for Li metal anodes are presented.

키워드

Copper current collectorDendrite growthLi metal anodesLithiophilic propertyCopper current collectorCu-basedCurrent-collectorDendrite growthHotspotsLi metalLithiophilic propertyLithium metal anodeLithium metalsProperty
제목
A review on copper current collector used for lithium metal batteries: Challenges and strategies
저자
Qiu, JunweiQiu, RulingMao, ZongyuHan, YeMadhusudan, PuttaswamyWang, XinWang, ChiQi, ChangshengYu, XiaoZeng, ShaozhongFu, DongjuHan, PeigangNiu, Shuzhang
DOI
10.1016/j.est.2024.113683
발행일
2024-10
유형
Review
저널명
Journal of Energy Storage
100
B
페이지
1 ~ 20