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用于低温锂离子电池的醚基电解质中通过添加剂调控界面实现的无共嵌入石墨负极

Co-Intercalation-Free Graphite Anode Enabled by an Additive Regulated Interphase in an Ether-Based Electrolyte for Low-Temperature Lithium-Ion Batteries.

作者信息

Yang Yujie, Li Yawen, Zhang Jingwei, Liu Xu, Yu Huaqing, Wu Lanqing, Duan Chengyao, Xi Zihang, Fang Ruijian, Zhao Qing

机构信息

Frontiers Science Center for New Organic Matter, Renewable Energy Conversion and Storage Center (RECAST), Key Laboratory of Advanced Energy Materials Chemistry (Ministry of Education), College of Chemistry, Nankai University, Tianjin 300071, China.

Haihe Laboratory of Sustainable Chemical Transformations, Tianjin 300192, China.

出版信息

ACS Appl Mater Interfaces. 2024 Feb 28;16(8):10116-10125. doi: 10.1021/acsami.3c17844. Epub 2024 Feb 21.

Abstract

Graphite (Gr) anode, which is endowed with high electronic conductivity and low volume expansion after Li-ion intercalation, establishes the basis for the success of rocking-chair Li-ion batteries (LIBs). However, due to the high barrier of the Li-ion desolvation process, sluggish transport of Li ions through the solid electrolyte interphase (SEI) and the high freezing points of electrolytes, the Gr anode still suffers from great loss of capacity and severe polarization at low temperature. Here, 1,2-diethoxyethane (DEE) with an intrinsically wide liquid region and weak solvation ability is applied as an electrolyte solvent for LIBs. By rationally designing the additives of electrolytes, an intact SEI with fast Li-ion conductivity is constructed, enabling the co-intercalation-free Gr anode with long-term stability (91.8% after 500 cycles) and impressive low-temperature characteristics (82.6% capacity retention at -20 °C). Coupled with LiFePO and LiNiMnCoO cathodes, the optimized electrolyte also demonstrates low polarization under -20 °C. Our work offers a feasible approach to enable ether-based electrolytes for low-temperature LIBs.

摘要

石墨(Gr)负极具有高电子导电性和锂离子嵌入后低体积膨胀的特性,为摇椅式锂离子电池(LIBs)的成功奠定了基础。然而,由于锂离子去溶剂化过程的高势垒、锂离子通过固体电解质界面(SEI)的缓慢传输以及电解质的高凝固点,Gr负极在低温下仍存在大量容量损失和严重极化问题。在此,具有固有宽液区和弱溶剂化能力的1,2 - 二乙氧基乙烷(DEE)被用作LIBs的电解质溶剂。通过合理设计电解质添加剂,构建了具有快速锂离子传导性的完整SEI,使无共嵌入的Gr负极具有长期稳定性(500次循环后为91.8%)和令人印象深刻的低温特性(在-20°C下容量保持率为82.6%)。与LiFePO和LiNiMnCoO正极相结合,优化后的电解质在-20°C下也表现出低极化。我们的工作为低温LIBs启用醚基电解质提供了一种可行的方法。

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