Inorganic fillers tailored Li+ solvation sheath for stable lithium metal batteries

被引:3
|
作者
Lin, Wenjun [1 ]
Yuan, Haoyang [2 ]
Tian, Changhao [2 ]
Song, Mengyuan [2 ]
Huang, Tao [1 ]
Yu, Aishui [1 ,2 ]
机构
[1] Fudan Univ, Lab Adv Mat, Shanghai 200438, Peoples R China
[2] Fudan Univ, Inst New Energy, Collaborat Innovat Ctr Chem Energy Mat, Dept Chem, Shanghai 200438, Peoples R China
关键词
Solid-electrolyte interphase (SEI); Dual salts; Ionic liquid; Lithium-metal batteries; SPECTROSCOPIC CHARACTERIZATION; IONIC-CONDUCTIVITY; ELECTROLYTE; LIFE;
D O I
10.1016/j.ensm.2024.103472
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Ionogel electrolytes based on gel scaffolds and ionic liquids (ILs) have garnered widespread attention for their processing compatibility, non-flammability, and exceptional thermal/electrochemical properties. While there have been many studies demonstrating the effectiveness of the bisalt approach in stabilizing lithium metal anode, the precise impact of skeleton-constrained dual-anion ionogels on interface modulation remains somewhat obscured and deserves further attention. Herein, we formulate a Li6.4La3Zr1.4Ta0.6O12 (LLZTO)-incorporated dual-anion ionogel to reveal the solvation chemistry in the presence of LLZTO and detail the Li+ transport mechanism and effect on the interfacial chemistries of Li-metal. The impact of inorganic substances on the solvation structure in IL-based solid electrolytes and their role in forming the SEI layer on lithium metal was unveiled. To be specific, the introduction of fillers exert a selective modulating influence on the anions species in the Li+-solvated shell and fine-tunes the local Li+ environment, thereby fostering a more robust interfacial layer. Modified ion environment in ionogels enables a preferable shift from vehicular to structural Li+ transport, whereby a high Li ion conductivity (1.24x10- 3 S/cm) and high Li ion transference number of 0.42 is achieved. The synergistic solvent coordination and adjustment of the electrode-electrolyte interface enable the LiFePO4| PIL-10|Li cells to cycle steadily with capacity retention of 95.4 % after 500 cycles at 1C and 25 degrees C. The strategy of promoting transport mechanisms holds promise for designing the next-generation solid-state lithium metal batteries with high energy density.
引用
收藏
页数:10
相关论文
共 50 条
  • [41] Glycerol-tailored asymmetric polyethersulfone membranes with uniform ion transport for stable lithium metal batteries
    Lo, Min
    Wu, Kevin C. -W.
    Chin, Jia Min
    Cheng, Liao-Ping
    Kuan, Wei-Fan
    GIANT, 2024, 17
  • [42] Regulating the Li+-Solvation Structure of Ester Electrolyte for High-Energy-Density Lithium Metal Batteries
    Xiao, Dengji
    Li, Qian
    Luo, Dan
    Li, Gaoran
    Liu, Hao
    Shui, Lingling
    Gourley, Storm
    Zhou, Guofu
    Wang, Xin
    Chen, Zhongwei
    SMALL, 2020, 16 (47)
  • [43] Interfacial "Single-Atom-in-Defects" Catalysts Accelerating Li+ Desolvation Kinetics for Long-Lifespan Lithium-Metal Batteries
    Wang, Jian
    Zhang, Jing
    Wu, Jian
    Huang, Min
    Jia, Lujie
    Li, Linge
    Zhang, Yongzheng
    Hu, Hongfei
    Liu, Fangqi
    Guan, Qinghua
    Liu, Meinan
    Adenusi, Henry
    Lin, Hongzhen
    Passerini, Stefano
    ADVANCED MATERIALS, 2023, 35 (39)
  • [44] Lithium-metal potential in Li+ containing ionic liquids
    Andrzej Lewandowski
    Agnieszka Swiderska-Mocek
    Journal of Applied Electrochemistry, 2010, 40 : 515 - 524
  • [45] Uniform lithium electrodeposition for stable lithium-metal batteries
    He, Xin
    Yang, Yang
    Cristian, Marian Stan
    Wang, Jun
    Hou, Xu
    Yan, Bo
    Li, Jinke
    Zhang, Tong
    Paillard, Elie
    Swietoslawski, Michal
    Kostecki, Robert
    Winter, Martin
    Li, Jie
    NANO ENERGY, 2020, 67
  • [46] Lithium-metal potential in Li+ containing ionic liquids
    Lewandowski, Andrzej
    Swiderska-Mocek, Agnieszka
    JOURNAL OF APPLIED ELECTROCHEMISTRY, 2010, 40 (03) : 515 - 524
  • [47] Li2MoO4 Tailored Anion-enhanced Solvation Sheath Layer Promotes Solution-phase Mediated Li-O2 Batteries
    Zhang, Fengling
    Hu, Zhengqiang
    Lai, Jingning
    Faiza, Arshad
    Hu, Xin
    Sun, Wen
    Zhou, Anbin
    Wang, Huirong
    Chen, Yi
    Xue, Tianyang
    Ye, Yusheng
    Chen, Nan
    Li, Li
    Wu, Feng
    Chen, Renjie
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2024,
  • [48] Stable cycling and fast charging of high-voltage lithium metal batteries enabled by functional solvation chemistry
    Xia, Meng
    Lin, Min
    Liu, Gaopan
    Cheng, Yong
    Jiao, Tianpeng
    Fu, Ang
    Yang, Yong
    Wang, Mingsheng
    Zheng, Jianming
    CHEMICAL ENGINEERING JOURNAL, 2022, 442
  • [49] Fast Li+ De-Solvation Kinetics with PDDA Intercalated-Montmorillonite Hybrid Artificial Interface Layer on Cu Substrate for Lithium Metal Batteries in a Wide Climate Temperature
    Shen, Yuxi
    Gu, Jianan
    Zhu, Zengquan
    Zhang, Linman
    Lv, Xiao-Jun
    Li, Yueming
    ADVANCED FUNCTIONAL MATERIALS, 2025, 35 (06)
  • [50] Regulating Li uniform deposition by lithiophilic interlayer as Li-ion redistributor for highly stable lithium metal batteries
    Zhang, Xiaojuan
    Chen, Yuanfu
    Ma, Fei
    Chen, Xin
    Wang, Bin
    Wu, Qi
    Zhang, Ziheng
    Liu, Dawei
    Zhang, Wanli
    He, Jiarui
    Xu, Zheng-Long
    CHEMICAL ENGINEERING JOURNAL, 2022, 436