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利用锆基金属玻璃薄膜制备具有超长循环寿命的无阳极锂离子电池和锂金属电池。

Exploiting Zirconium-Based Metallic Glass Thin Films for Anode-Free Lithium-Ion Batteries and Lithium Metal Batteries With Ultra-Long Cycling Life.

作者信息

Kim Jong Gyeom, Gu Dongeun, Cho Kwang-Hwan, Im Chae-Yoon, Kim Suk Jun

机构信息

School of Energy, Materials and Chemical Engineering, Korea University of Technology and Education, Cheonan, 31253, South Korea.

R & D Center Platform Material 1 Team, Samsung SDI, 130 Samsung-ro, Yeongtong-gu, Suwon-si, Gyeonggi-do, 16678, South Korea.

出版信息

Small. 2023 Sep;19(37):e2301207. doi: 10.1002/smll.202301207. Epub 2023 May 8.

Abstract

Coating Zr-based metallic glass, Zr Cu Ni Al (Zr-MG), on a Cu current collector (CC) and Li metal anode (LMA) significantly improves the cycle performance of both types of Li-ion batteries, namely, anode-free Li-ion batteries (AFLBs) and Li metal batteries (LMB). The inherent isotropy and homogeneity of the Zr-MG significantly improve the surface uniformity of the CC and LMA. A 12 nm-thick Zr-MG thin film coating on the CC reduces the overpotential in the AFLB, leading to a more uniform Li plating morphology. The Li film covers almost the entire surface of the Zr-CC, whereas it only covers ≈75% of the bare CC during charging. An LFP||Zr-CC full-cell exhibits a capacity retention of 63.6% after the 100th cycle, with an average CE of 99.55% at a 0.2 C rate. In the case of the LMB, a 12 nm-thick Zr-MG thin film-coated LMA (Zr-LMA) exhibits a stable capacity of up to 1500 cycles. An LFP||Zr-LMA full-cell exhibits capacity retention and CE after 1500 cycles of 66.6% and 99.97%, respectively, at a 1 C rate. Zirconium-MG thin films with atomic-level uniformity, outstanding corrosion resistance, lithiophilic characteristics, and high diffusivity result in superior AFLB and LMB performances.

摘要

在铜集流体(CC)和锂金属阳极(LMA)上涂覆锆基金属玻璃Zr Cu Ni Al(Zr-MG),可显著提高两种类型锂离子电池的循环性能,即无阳极锂离子电池(AFLB)和锂金属电池(LMB)。Zr-MG固有的各向同性和均匀性显著改善了CC和LMA的表面均匀性。在CC上涂覆12纳米厚的Zr-MG薄膜可降低AFLB中的过电位,从而使锂镀层形态更加均匀。锂膜几乎覆盖了Zr-CC的整个表面,而在充电过程中,它仅覆盖了约75%的裸CC表面。一个LFP||Zr-CC全电池在第100次循环后容量保持率为63.6%,在0.2 C倍率下平均库仑效率为99.55%。对于LMB,一个涂覆了12纳米厚Zr-MG薄膜的LMA(Zr-LMA)在高达1500次循环中表现出稳定的容量。一个LFP||Zr-LMA全电池在1 C倍率下经过1500次循环后的容量保持率和库仑效率分别为66.6%和99.9

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