Regulation of pseudographitic carbon domain to boost sodium energy storage

被引:0
|
作者
Zhidong Hou
Mingwei Jiang
Da Lei
Xiang Zhang
Yuyang Gao
Jian-Gan Wang
机构
[1] Northwestern Polytechnical University and Shaanxi Joint Lab of Graphene (NPU),State Key Laboratory of Solidification Processing, Center for Nano Energy Materials, School of Materials Science and Engineering
来源
Nano Research | 2024年 / 17卷
关键词
pseudographitic structure; molten salt; hard carbon; anode; sodium-ion batteries;
D O I
暂无
中图分类号
学科分类号
摘要
Hard carbon anode has shown extraordinary potentials for sodium-ion batteries (SIBs) owing to the cost-effectiveness and advantaged microstructure. Nevertheless, the widespread application of hard carbon is still hindered by the insufficient sodium storage capacity and depressed rate property, which are mainly induced by the undesirable pseudographitic structure. Herein, we develop a molten-salt-mediated strategy to regulate the pseudographitic structure of hard carbon with suitable interlayer spacing and enlarged pseudographitic domain, which is conducive to the intercalation capacity and diffusion kinetics of sodium ions. Impressively, the optimized hard carbon anode delivers a high reversible capacity of 320 mAh·g−1, along with superior rate property (138 mAh·g−1 at 2 A·g−1) and stable cyclability over 1800 cycles. Moreover, the in situ Raman spectroscopic study and full-cell assembly further investigate the sodium storage mechanism and practical implement of obtained hard carbon. This work pioneers a low-cost and effective route to regulate the pseudographitic structure of hard carbon materials for advanced SIBs.
引用
收藏
页码:5188 / 5196
页数:8
相关论文
共 50 条
  • [21] Heteroatom Doping: An Effective Way to Boost Sodium Ion Storage
    Li, Yu
    Chen, Minghua
    Liu, Bo
    Zhang, Yan
    Liang, Xinqi
    Xia, Xinhui
    ADVANCED ENERGY MATERIALS, 2020, 10 (27)
  • [22] Coupling anodic/cathodic energy storage through in situ heterostructure regulation of ordered microporous carbon for sodium-ion hybrid capacitors
    Li, Juan
    Wang, Bo
    Hu, Tianzhao
    Wang, Yuzuo
    Sun, Zhenhua
    Wang, Chunzhong
    Zhang, Dong
    Wang, Zhuopeng
    Li, Feng
    JOURNAL OF MATERIALS CHEMISTRY A, 2021, 9 (06) : 3360 - 3368
  • [23] Invasive plants can boost blue carbon storage
    Kingston, R.
    MARINE POLLUTION BULLETIN, 2018, 136 : 567 - 567
  • [24] Energy Storage and Regulation: An Analysis
    Fooladivanda, Dariush
    Rosenberg, Catherine
    Garg, Siddharth
    IEEE TRANSACTIONS ON SMART GRID, 2016, 7 (04) : 1813 - 1823
  • [25] An Analysis of Energy Storage and Regulation
    Fooladivanda, D.
    Rosenberg, C.
    Garg, S.
    2014 IEEE INTERNATIONAL CONFERENCE ON SMART GRID COMMUNICATIONS (SMARTGRIDCOMM), 2014, : 91 - 96
  • [26] Sodium and sodium-ion energy storage batteries
    Ellis, Brian L.
    Nazar, Linda F.
    CURRENT OPINION IN SOLID STATE & MATERIALS SCIENCE, 2012, 16 (04): : 168 - 177
  • [27] Bio-energy Zeolite boost for biogas storage
    King, Anthony
    CHEMISTRY & INDUSTRY, 2012, 76 (07) : 14 - 14
  • [28] Demand shifting will boost thermal energy storage (TES)
    KSE Engineers, La Jolla, United States
    Strategic Plann Energy Environ, 4 (25-34):
  • [29] Mechanochemistry induced pore regulation and pyridinic nitrogen doping in anthracite derived carbon for sodium storage
    Gao, Xinmei
    Shen, Zhimeng
    Chang, Gaobo
    Li, Zhong
    Zhao, Hanqing
    DIAMOND AND RELATED MATERIALS, 2022, 130
  • [30] Graphene induced N/O doping and structural regulation of carbon nanofibers for enhanced sodium storage
    He, Yuancheng
    Shen, Zhimeng
    Zhang, Shujun
    Chang, Gaobo
    Huang, Cheng
    Li, Zhong
    Zhao, Hanqing
    NEW JOURNAL OF CHEMISTRY, 2024, 48 (07) : 3268 - 3275