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用于高稳定性准固态锂金属电池的超分子聚合物交联凝胶电解质。

Supramolecular polymer cross-linking gel electrolyte for highly stable quasi-solid-state lithium metal batteries.

作者信息

Zhang Jiaying, Yan Lijing, Zhao Yue, Meng Xianhe, Ma Tingli

机构信息

Graduate School of Life Science and Systems Engineering, Kyushu Institute of Technology, 2-4 Hibikino, Wakamatsu, Kitakyushu, Japan.

College of Materials and Chemistry, China Jiliang University, Hangzhou 310018, PR China.

出版信息

J Colloid Interface Sci. 2025 Feb;679(Pt A):384-392. doi: 10.1016/j.jcis.2024.09.209. Epub 2024 Sep 27.

Abstract

Lithium (Li) metal batteries have the advantage of high energy density, but the Li dendrites risk piercing the separator and causing a short circuit in the battery. Replacing the liquid electrolytes with gel electrolytes is considered an effective strategy to solve the issues. Herein, a poly(vinylidene fluoride-co-hexafluoropropylene) (PVDF-HFP)-based gel electrolyte, improved with multifunctional supramolecular polymer (MSP), was prepared to enhance the cycling stability and energy density of quasi-solid-state Li metal batteries. The MSP addictive constructs a cross-linked network structure with PVDF-HFP matrix and lithium bis(trifluoromethanesulfonyl)imide (LiTFSI) through hydrogen bonding, improving the mechanical strength of the composite gel electrolyte (PH-10%MSP-GE) to against the growth of Li dendrites. Moreover, the pre-lithiated sulfonic acid groups, conductive polyether groups of MSP, and the attraction of TFSI anions, promote the Li-ion transportation of the composite gel electrolyte. Finally, the Li||Li symmetric cell cycle stably for over 450 h. The Li||LiFePO full cell demonstrates a high energy density and excellent cycling stability for over 600 cycles, with a capacity retention rate of up to 98.7%. This work provides valuable insights into the preparation of multifunctional composite gel polymer electrolytes and competitive quasi-solid-state Li metal batteries.

摘要

锂(Li)金属电池具有能量密度高的优点,但锂枝晶有刺穿隔膜并导致电池短路的风险。用凝胶电解质替代液体电解质被认为是解决这些问题的有效策略。在此,制备了一种基于聚(偏二氟乙烯-共-六氟丙烯)(PVDF-HFP)的凝胶电解质,并通过多功能超分子聚合物(MSP)进行改进,以提高准固态锂金属电池的循环稳定性和能量密度。MSP添加剂通过氢键与PVDF-HFP基体和双(三氟甲烷磺酰)亚胺锂(LiTFSI)构建交联网络结构,提高复合凝胶电解质(PH-10%MSP-GE)的机械强度,以抵抗锂枝晶的生长。此外,MSP的预锂化磺酸基团、导电聚醚基团以及TFSI阴离子的吸引力,促进了复合凝胶电解质的锂离子传输。最后,Li||Li对称电池稳定循环超过450小时。Li||LiFePO全电池展示了高能量密度和超过600次循环的优异循环稳定性,容量保持率高达98.7%。这项工作为多功能复合凝胶聚合物电解质和具有竞争力的准固态锂金属电池的制备提供了有价值的见解。

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