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阳离子聚合人工固态电解质界面层修饰锂金属在软物质聚合物电解质中的应用。

Cation-polymerized artificial SEI layer modified Li metal applied in soft-matter polymer electrolyte.

作者信息

Tang Siming, Mei Qingyang, Zhai Yutong, Liu Yulong

机构信息

National & Local United Engineering Laboratory for Power Battery, Department of Chemistry, Northeast Normal University, Changchun, 130024, People's Republic of China.

出版信息

Nanotechnology. 2024 May 28;35(33). doi: 10.1088/1361-6528/ad49ad.

Abstract

Li metal batteries with polymer electrolyte are of great interest for next-generation batteries for high safety and high energy density. However, uneven deposition on the lithium metal surface can greatly affect battery life. Therefore, surface modification on the Li metal become necessary to achieve good performance. Herein, an artificial solid electrolyte interface (SEI) modified lithium metal anode is prepared using cation-polymerization process, as triggered by PFgenerated from CsPF. As a result, the polarization voltage of Li||Li symmetric battery assembled with artificial SEI-modified Li metal anode was stable with a small over-potential of 25 mV after 3000 h at current density of 1.5 mA cm. Electrochemical performance of Li||NCM 622 (LiNiCoMnO) full cell with soft-matter polymer electrolyte is significantly improved than bare Li-metal, the capacity retention is 75% after 120 cycles with N/P = 3:1 at a cut-off voltage of 4.3 V. Our work has shed lights on the commercialization of Li metal battery with polymer electrolyte.

摘要

具有聚合物电解质的锂金属电池因其高安全性和高能量密度而成为下一代电池的研究热点。然而,锂金属表面的不均匀沉积会极大地影响电池寿命。因此,对锂金属进行表面改性对于实现良好性能变得必要。在此,利用由CsPF产生的PF引发的阳离子聚合过程制备了一种人工固体电解质界面(SEI)改性的锂金属负极。结果,在电流密度为1.5 mA cm的情况下,使用人工SEI改性锂金属负极组装的Li||Li对称电池的极化电压在3000小时后稳定,过电位小至25 mV。与裸锂金属相比,具有软物质聚合物电解质的Li||NCM 622(LiNiCoMnO)全电池的电化学性能显著提高,在截止电压为4.3 V、N/P = 3:1的情况下,120次循环后容量保持率为75%。我们的工作为聚合物电解质锂金属电池的商业化提供了思路。

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