Impact of Hard Carbon Properties on Their Performance in Potassium-Ion Batteries

被引:18
|
作者
Larbi, Louiza [1 ,2 ]
Larhrib, Badre [3 ]
Beda, Adrian [1 ]
Madec, Lenaic [3 ,4 ]
Monconduit, Laure [4 ,5 ]
Ghimbeu, Camelia Matei [1 ,4 ]
机构
[1] Univ Haute Alsace, CNRS, Inst Sci Mat Mulhouse IS2M, Unit Mixte Rech CNRS UMR 7361, F-68100 Mulhouse, France
[2] Univ Strasbourg, F-67081 Strasbourg, France
[3] Univ Pau & Pays Adour, Inst Sci Analyt & Physicochim Environm & Mat IPREM, CNRS, Energy & Environm Solut Univ Pau & Pays Adour E2S, F-64053 Pau, France
[4] CNRS, Reseau Stockage Electrochim Energie, FR3459, Amiens, France
[5] Univ Montpellier, Inst Charles Gerhardt Montpellier ICGM, CNRS, Ecole Natl Super Chim Montpellier ENSCM, F-34293 Montpellier, France
关键词
Hard carbon; Graphite; Anodes; Potassium-ion batteries; Energy storage; SURFACE-CHEMISTRY; ANODE; STORAGE; ELECTRODES; GRAPHITE; GRAPHENE; INSIGHTS; POLYMER;
D O I
10.1021/acsaem.3c00201
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
This work reports on the synthesis of hard carbon spheres (HCS) and the impact of the pyrolysis temperature (1500 to 1900 degrees C) on the properties of HC and its relationship with the electrochemical performance in potassium-ion batteries (KIBs). Comparison with commercial graphite performance is provided as well. Spherical morphology, disordered structure, and low surface area were obtained for the HCSs. Most properties (interlayer space, active surface area, and oxygen-based functional groups) were found to decrease with increasing pyrolysis temperature, except for the helium density and closed porosity, which increase. However, graphite presents a flake-like morphology with a larger particle size, a higher helium density, an ordered structure with a smaller interlayer distance, and no closed pores. Electrochemical tests in a half-cell vs K+/K showed that HCSs perform better than graphite with higher initial Coulombic efficiency (ICE) and better specific capacities. The HCSs pyrolyzed at 1500 and 1700 degrees C exhibit the best initial Coulombic efficiency, ICEs of 54 and 62%, and specific capacities of 254 and 247 mAh g-1 (C/20, 11.5 mA g-1), respectively. The ICE is affected by multiple surface and bulk parameters but also by electrolyte formulation (67% for 0.8 M KFSI vs 62% for 0.8 M KPF6). The capacity is governed by diffusive phenomena, and a larger interlayer graphitic spacing and defects favor a better insertion of K ions. Closed pores did not lead to an improvement in capacity. Furthermore, HCSs exhibit significantly better capacity retention (97%) than graphite (84%), especially when cycled at high current rates (up to 10C depotassiation rate).
引用
收藏
页码:5274 / 5289
页数:16
相关论文
共 50 条
  • [1] Impact of Milling Conditions on Hard and Soft Carbon Properties and Performance in Potassium-Ion Batteries
    Larbi, Louiza
    Larhrib, Badre
    Madec, Lenaic
    Vaulot, Cyril
    Monconduit, Laure
    Ghimbeu, Camelia Matei
    ACS APPLIED ENERGY MATERIALS, 2024, 7 (08) : 3378 - 3392
  • [2] Developments and prospects of carbon anode materials in potassium-ion batteries
    Liu, Zhaomeng
    Gong, Zhiqing
    He, Kunyang
    Qiu, Peng
    Wang, Xuan-Chen
    Zhao, Lu-Kang
    Gu, Qin-Fen
    Gao, Xuan-Wen
    Luo, Wen-Bin
    SCIENCE CHINA-MATERIALS, 2025, 68 (03) : 709 - 723
  • [3] Porous carbon nanofibers as anode for high-performance potassium-ion batteries
    Chen, Lan
    Lin, Xuqi
    Gao, Jingguo
    Zou, Mingzhong
    Huang, Yongcong
    Zhao, Guiying
    Li, Jiaxin
    ELECTROCHIMICA ACTA, 2022, 403
  • [4] Impact of Degree of Graphitization, Surface Properties and Particle Size Distribution on Electrochemical Performance of Carbon Anodes for Potassium-Ion Batteries
    Wrogemann, Jens M.
    Fromm, Olga
    Deckwirth, Fabian
    Beltrop, Kolja
    Heckmann, Andreas
    Winter, Martin
    Placke, Tobias
    BATTERIES & SUPERCAPS, 2022, 5 (06)
  • [5] The roles of electrolyte chemistry in hard carbon anode for potassium-ion batteries
    Wu, Zhenrui
    Zou, Jian
    Shabanian, Sadaf
    Golovin, Kevin
    Liu, Jian
    CHEMICAL ENGINEERING JOURNAL, 2022, 427
  • [6] Hard Carbon as Anodes for Potassium-Ion Batteries: Developments and Prospects
    Qiu, Peng
    Chen, Haohong
    Zhang, Hanzhi
    Wang, Han
    Wang, Lianhao
    Guo, Yingying
    Qi, Ji
    Yi, Yong
    Zhang, Guobin
    INORGANICS, 2024, 12 (12)
  • [7] Hard-Soft Composite Carbon as a Long-Cycling and High-Rate Anode for Potassium-Ion Batteries
    Jian, Zelang
    Hwang, Sooyeon
    Li, Zhifei
    Hernandez, Alexandre S.
    Wang, Xingfeng
    Xing, Zhenyu
    Su, Dong
    Ji, Xiulei
    ADVANCED FUNCTIONAL MATERIALS, 2017, 27 (26)
  • [8] Research progress on carbon anode materials in potassium-ion batteries
    Lei Yu
    Han Da
    Qin Lei
    Zhai Deng-yun
    Kang Fei-yu
    NEW CARBON MATERIALS, 2019, 34 (06) : 499 - 511
  • [9] Spontaneous Formation of Interwoven Porous Channels in Hard-Wood- Based Hard-Carbon for High-Performance Anodes in Potassium-Ion Batteries
    Prabakar, S. J. Richard
    Han, Su Cheol
    Park, Chunguk
    Bhairuba, Ikhe Amol
    Reece, Michael J.
    Sohn, Kee-Sun
    Pyo, Myoungho
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2017, 164 (09) : A2012 - A2016
  • [10] Could potassium-ion batteries become a competitive technology?
    Zarrabeitia, Maider
    Carretero-Gonzalez, Javier
    Leskes, Michal
    Adenusi, Henry
    Iliev, Boyan
    Schubert, Thomas J. S.
    Passerini, Stefano
    Castillo-Martinez, Elizabeth
    ENERGY MATERIALS, 2023, 3 (06):