An electron-deficient carbon current collector for anode-free Li-metal batteries

被引:164
作者
Kwon, Hyeokjin [1 ]
Lee, Ju-Hyuk [1 ]
Roh, Youngil [1 ]
Baek, Jaewon [1 ]
Shin, Dong Jae [1 ]
Yoon, Jong Keon [2 ]
Ha, Hoe Jin [2 ]
Kim, Je Young [2 ]
Kim, Hee-Tak [1 ,3 ]
机构
[1] Korea Adv Inst Sci & Technol, Dept Chem & Biomol Engn, 291 Daehak Ro, Daejeon 34141, South Korea
[2] LG Energy Solut, Battery R&D, 188 Munji Ro, Daejeon 34122, South Korea
[3] Korea Adv Inst Sci & Technol, Adv Battery Ctr, KAIST Inst NanoCentury, 291 Daehak Ro, Daejeon 34141, South Korea
基金
新加坡国家研究基金会;
关键词
LITHIUM-METAL;
D O I
10.1038/s41467-021-25848-1
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The development of anode-free batteries requires fundamental investigations at the current collector/electrolyte interface. Here, the authors report an atomically defective carbon current collector to improve the electrochemical behaviour of an anode-free Li-based cell. The long-term cycling of anode-free Li-metal cells (i.e., cells where the negative electrode is in situ formed by electrodeposition on an electronically conductive matrix of lithium sourced from the positive electrode) using a liquid electrolyte is affected by the formation of an inhomogeneous solid electrolyte interphase (SEI) on the current collector and irregular Li deposition. To circumvent these issues, we report an atomically defective carbon current collector where multivacancy defects induce homogeneous SEI formation on the current collector and uniform Li nucleation and growth to obtain a dense Li morphology. Via simulations and experimental measurements and analyses, we demonstrate the beneficial effect of electron deficiency on the Li hosting behavior of the carbon current collector. Furthermore, we report the results of testing anode-free coin cells comprising a multivacancy defective carbon current collector, a LixNi0.8Co0.1Mn0.1-based cathode and a nonaqueous Li-containing electrolyte solution. These cells retain 90% of their initial capacity for over 50 cycles under lean electrolyte conditions.
引用
收藏
页数:13
相关论文
共 48 条
  • [1] The success story of graphite as a lithium-ion anode material - fundamentals, remaining challenges, and recent developments including silicon (oxide) composites
    Asenbauer, Jakob
    Eisenmann, Tobias
    Kuenzel, Matthias
    Kazzazi, Arefeh
    Chen, Zhen
    Bresser, Dominic
    [J]. SUSTAINABLE ENERGY & FUELS, 2020, 4 (11) : 5387 - 5416
  • [2] Multilayer-graphene-stabilized lithium deposition for anode-Free lithium-metal batteries
    Assegie, Addisu Alemayehu
    Chung, Cheng-Chu
    Tsai, Meng-Che
    Su, Wei-Nien
    Chen, Chun-Wei
    Hwang, Bing-Joe
    [J]. NANOSCALE, 2019, 11 (06) : 2710 - 2720
  • [3] Assegie AA, 2018, NANOSCALE, V10, P6125, DOI [10.1039/c7nr09058g, 10.1039/C7NR09058G]
  • [4] Initial Stages of Oxidation on Graphitic Surfaces: Photoemission Study and Density Functional Theory Calculations
    Barinov, Alexei
    Malcioglu, O. Baris
    Fabris, Stefano
    Sun, Tao
    Gregoratti, Luca
    Dalmiglio, Matteo
    Kiskinova, Maya
    [J]. JOURNAL OF PHYSICAL CHEMISTRY C, 2009, 113 (21) : 9009 - 9013
  • [5] Laser-Induced Silicon Oxide for Anode-Free Lithium Metal Batteries
    Chen, Weiyin
    Salvatierra, Rodrigo V.
    Ren, Muqing
    Chen, Jinhang
    Stanford, Michael G.
    Tour, James M.
    [J]. ADVANCED MATERIALS, 2020, 32 (33)
  • [6] Lithiophilicity chemistry of heteroatom-doped carbon to guide uniform lithium nucleation in lithium metal anodes
    Chen, Xiang
    Chen, Xiao-Ru
    Hou, Ting-Zheng
    Li, Bo-Quan
    Cheng, Xin-Bing
    Zhang, Rui
    Zhang, Qiang
    [J]. SCIENCE ADVANCES, 2019, 5 (02)
  • [7] The Effect of Vinylene Carbonate Additive on Surface Film Formation on Both Electrodes in Li-Ion Batteries
    El Ouatani, L.
    Dedryvere, R.
    Siret, C.
    Biensan, P.
    Reynaud, S.
    Iratcabal, P.
    Gonbeau, D.
    [J]. JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2009, 156 (02) : A103 - A113
  • [8] Non-flammable electrolyte enables Li-metal batteries with aggressive cathode chemistries
    Fan, Xiulin
    Chen, Long
    Borodin, Oleg
    Ji, Xiao
    Chen, Ji
    Hou, Singyuk
    Deng, Tao
    Zheng, Jing
    Yang, Chongyin
    Liou, Sz-Chian
    Amine, Khalil
    Xu, Kang
    Wang, Chunsheng
    [J]. NATURE NANOTECHNOLOGY, 2018, 13 (08) : 715 - +
  • [9] Raman spectrum of graphene and graphene layers
    Ferrari, A. C.
    Meyer, J. C.
    Scardaci, V.
    Casiraghi, C.
    Lazzeri, M.
    Mauri, F.
    Piscanec, S.
    Jiang, D.
    Novoselov, K. S.
    Roth, S.
    Geim, A. K.
    [J]. PHYSICAL REVIEW LETTERS, 2006, 97 (18)
  • [10] Tuning of ZIF-Derived Carbon with High Activity, Nitrogen Functionality, and Yield - A Case for Superior CO2 Capture
    Gadipelli, Srinivas
    Guo, Zheng Xiao
    [J]. CHEMSUSCHEM, 2015, 8 (12) : 2123 - 2132