A covalently bonded, LiF-rich solid electrolyte interphase for Li metal batteries with superior low-temperature performance

被引:0
|
作者
Chen, Shuiyin [1 ]
Meng, Xiaodong [1 ]
Han, Dengji [1 ]
Chen, Shang [2 ]
Zhou, Ji [2 ]
Wang, Manyun [2 ]
Wang, Jiamin [1 ]
Wang, Zhongli [1 ]
Bielawski, Christopher W. [3 ,4 ]
Geng, Jianxin [1 ]
机构
[1] State Key Laboratory of Separation Membranes and Membrane Processes, Tianjin Key Laboratory of Advanced Fibers and Energy Storage, School of Material Science and Engineering, Tiangong University, No. 399 BinShuiXi Road, XiQing District, Tianjin,300387, Chi
[2] State Key Laboratory of Organic-Inorganic Composites, Beijing Advanced Innovation Center for Soft Matter Science and Engineering, Beijing University of Chemical Technology, No. 15 North Third Road East, Chaoyang District, Beijing,100029, China
[3] Center for Multidimensional Carbon Materials (CMCM), Institute for Basic Science (IBS), Ulsan,44919, Korea, Republic of
[4] Department of Chemistry, Ulsan National Institute of Science and Technology (UNIST), Ulsan,44919, Korea, Republic of
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Lithium compounds
引用
收藏
相关论文
共 50 条
  • [1] A covalently bonded, LiF-rich solid electrolyte interphase for Li metal batteries with superior low-temperature performance
    Chen, Shuiyin
    Meng, Xiaodong
    Han, Dengji
    Chen, Shang
    Zhou, Ji
    Wang, Manyun
    Wang, Jiamin
    Wang, Zhongli
    Bielawski, Christopher W.
    Geng, Jianxin
    CHEMICAL ENGINEERING JOURNAL, 2024, 500
  • [2] Stabilizing Li-metal host anode with LiF-rich solid electrolyte interphase
    Jaewoo Lee
    Min-Sik Park
    Jung Ho Kim
    Nano Convergence, 8
  • [3] Stabilizing Li-metal host anode with LiF-rich solid electrolyte interphase
    Lee, Jaewoo
    Park, Min-Sik
    Kim, Jung Ho
    NANO CONVERGENCE, 2021, 8 (01)
  • [4] Use of a solid polymer/ceramic electrolyte coating to promote uniform Li flux and a LiF-rich interphase for lithium metal batteries
    Li, Xin
    Lin, Yong
    Fan, Yunyan
    Lu, Junjie
    Lin, Shaojing
    Chen, Xian
    Ji, Jianbing
    Li, Wenxiang
    Zhang, Ling
    Han, Xiang
    NEW JOURNAL OF CHEMISTRY, 2025, 49 (06) : 2365 - 2371
  • [5] Tailoring Electrolyte Solvation for LiF-Rich Solid Electrolyte Interphase toward a Stable Li Anode
    Tu, Haifeng
    Li, Linge
    Wang, Zhicheng
    Wang, Jian
    Lin, Hongzhen
    Wang, Mingchao
    Yan, Cheng
    Liu, Meinan
    ACS NANO, 2022, 16 (10) : 16898 - 16908
  • [6] Trace Dual-Salt Electrolyte Additive Enabling a LiF-Rich Solid Electrolyte Interphase for High-Performance Lithium Metal Batteries
    Xia, Yingchun
    Hou, Wenhui
    Zhou, Pan
    Ou, Yu
    Cheng, Guangyu
    Guo, Chong
    Liu, Fengxiang
    Zhang, Weili
    Yan, Shuaishuai
    Lu, Yang
    Zeng, Yunxiong
    Liu, Kai
    NANO LETTERS, 2024, 24 (41) : 12791 - 12798
  • [7] Li2CO3/LiF-Rich Heterostructured Solid Electrolyte Interphase with Superior Lithiophilic and Li+-Transferred Characteristics via Adjusting Electrolyte Additives
    Wu, Daxiong
    He, Jian
    Liu, Jiandong
    Wu, Mingguang
    Qi, Shihan
    Wang, Huaping
    Huang, Junda
    Li, Fang
    Tang, Dongliang
    Ma, Jianmin
    ADVANCED ENERGY MATERIALS, 2022, 12 (18)
  • [8] Design of a LiF-Rich Solid Electrolyte Interphase Layer through Highly Concentrated LiFSI-THF Electrolyte for Stable Lithium Metal Batteries
    Pham, Thuy Duong
    Bin Faheem, Abdullah
    Lee, Kyung-Koo
    SMALL, 2021, 17 (46)
  • [9] Ambiently fostering solid electrolyte interphase for low-temperature lithium metal batteries
    Duan, Jia-Yue
    Chen, Jin-Xiu
    Wang, Fang-Fang
    Zhang, Jin-Hao
    Fan, Xiao-Zhong
    Wang, Liping
    Song, Yingze
    Xia, Wei
    Zhao, Yusheng
    Kong, Long
    JOURNAL OF ENERGY CHEMISTRY, 2023, 87 (473-478): : 473 - 478
  • [10] Ambiently fostering solid electrolyte interphase for low-temperature lithium metal batteries
    Jia-Yue Duan
    Jin-Xiu Chen
    Fang-Fang Wang
    Jin-Hao Zhang
    Xiao-Zhong Fan
    Liping Wang
    Yingze Song
    Wei Xia
    Yusheng Zhao
    Long Kong
    Journal of Energy Chemistry , 2023, (12) : 473 - 478