Pyrrole derivatives as interlayer modifier of Li-S batteries: Modulation of electrochemical performance by molecular perturbation

被引:5
|
作者
Jiajv Lin [1 ]
Yuan Zhou [1 ]
Jingbo Wen [1 ]
Weijie Si [1 ,2 ,3 ]
Hongcheng Gao [2 ]
Gongming Wang [3 ]
Xiongwu Kang [1 ]
机构
[1] New Energy Research Institute, School of Environment and Energy, South China University of Technology
[2] Key Laboratory of Aqueous Environment Protection and Pollution Control of Yangtze River in Anhui of Anhui, Provincial Education Department, College of Resources and Environment, Anqing Normal University
[3] Hefei National Laboratory for Physical Sciences at the Microscale and Department of Chemistry, University of Science & Technology of China
基金
中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
TM912 [蓄电池]; O626.13 [氮杂茂(吡咯)族];
学科分类号
070303 ; 0808 ; 081704 ;
摘要
The electrochemical performance of lithium-sulfur(Li-S) batteries is strongly hampered by the shuttle effect and slow redox kinetics of lithium polysulfides(Li PSs). Surface modified interlayer of a separator of Li-S batteries is demonstrated to be an effective strategy to overcome this problem. Herein, cobalt nanoparticles confined in nitrogen co-doped porous carbon framework(Co-CN) were developed from pyrolysis of ZIF-67 and used as interlayer of PP separator for Li-S batteries, and were functionalized by four pyrrole derivatives, 1-phenylpyrrole, 1-methyl pyrrole, 1-(p-toluenesulfonyl) pyrrole, and 1-pyrrole, respectively, which were screened in terms of the electron-withdrawing/donating ability of the substituent groups on the pyrrolic nitrogen. The impact of the molecular structure of pyrrole derivatives on the interaction with Li PSs and the electrochemical performance of Li-S batteries were explored by nuclear magnetic resonance and theoretical calculation. It is uncovered that 1-phenylpyrrole shows the highest enhancement of redox kinetics of Li PSs, attributing to the optimal interaction with Co nanoparticles and Li PSs. Therefore, 1-phenylpyrrole modified Co-CN interlayer enables the best electrochemical performance for the Li-S batteries, delivering a specific capacity of 562 m Ah g-1at 5 C and a capacity of 538, 526, and 449 m Ah g-1after 500 cycles at 1, 2, and 3 C, respectively. At a high sulfur loading of 5.5 mg cm-2, it achieves a capacity of 440 m Ah g-1after 500 cycles at 1 C. This work reveals the interaction mechanism among Li PSs, Co nanoparticles and the molecular modifiers in improving the electrochemical performance of Li-S batteries.
引用
收藏
页码:164 / 172
页数:9
相关论文
共 50 条
  • [31] Insight into the positive effect of porous hierarchy in S/C cathodes on the electrochemical performance of Li-S batteries
    Wu, Pan
    Chen, Li-Hua
    Xiao, Shan-Shan
    Yu, Shen
    Wang, Zhao
    Li, Yu
    Su, Bao-Lian
    NANOSCALE, 2018, 10 (25) : 11861 - 11868
  • [32] Synthesis and electrochemical performance of CeO2@CNTs/S composite cathode for Li-S batteries
    Zhu, Fengshuai
    Zhang, Mingang
    Wang, Ling
    Cao, Xiangyu
    JOURNAL OF SOLID STATE ELECTROCHEMISTRY, 2021, 25 (10-11) : 2625 - 2637
  • [33] Boosting electrochemical performance of Li-S batteries by cerium-based MOFs coated with polypyrrole
    Chen X.
    Zhang M.
    Zhu J.
    Wang J.
    Jiao Z.
    Li Y.
    Journal of Alloys and Compounds, 2022, 901
  • [34] Boosting electrochemical performance of Li-S batteries by cerium-based MOFs coated with polypyrrole
    Chen, Xiaohua
    Zhang, Mi
    Zhu, Jin
    Wang, Juan
    Jiao, Zengbao
    Li, Yong
    JOURNAL OF ALLOYS AND COMPOUNDS, 2022, 901
  • [35] Effect of Preparation Methods on the Electrochemical Performance of All-solid-state Li-S Batteries
    Ul Choi, Han
    Jin, Ju Sung
    Lim, Hyung-Tae
    KOREAN JOURNAL OF METALS AND MATERIALS, 2017, 55 (07): : 503 - 508
  • [36] Highly efficient and green fabrication of a modified C nanofiber interlayer for high-performance Li-S batteries
    Wu, Keshi
    Hu, Yi
    Shen, Zhen
    Chen, Renzhong
    He, Xia
    Cheng, Zhongling
    Pan, Peng
    JOURNAL OF MATERIALS CHEMISTRY A, 2018, 6 (06) : 2693 - 2699
  • [37] The direct application of spent graphite as a functional interlayer with enhanced polysulfide trapping and catalytic performance for Li-S batteries
    Xu, Qi
    Wang, Yang
    Shi, Xinyu
    Zhong, Yanjun
    Wu, Zhenguo
    Song, Yang
    Wang, Gongke
    Liu, Yuxia
    Zhong, Benhe
    Guo, Xiaodong
    GREEN CHEMISTRY, 2021, 23 (02) : 942 - 950
  • [38] ZnS-Nanoparticle-Coated Carbon Cloth as an Efficient Interlayer for High-Performance Li-S Batteries
    Liu, Rui
    Tao, Wei
    Du, Yingxia
    Wu, Cuixia
    Ye, Huan
    Fan, Min
    Chen, Shuguang
    Chen, GuanHua
    Mao, Jianjun
    Xin, Sen
    Cao, Fei-Fei
    ACS APPLIED ENERGY MATERIALS, 2022, 5 (10): : 12408 - 12414
  • [39] Enhanced cycle performance of Li-S battery with a polypyrrole functional interlayer
    Ma, Guoqiang
    Wen, Zhaoyin
    Jin, Jun
    Wu, Meifen
    Wu, Xiangwei
    Zhang, Jingchao
    JOURNAL OF POWER SOURCES, 2014, 267 : 542 - 546
  • [40] CO2-derived free-standing carbon interlayer embedded with molecular catalysts for improving redox performance in Li-S batteries
    Yang, Jeongwoo
    Kang, Dong Woo
    Kim, Hodong
    Hwang, Byunghoon
    Lee, Jae W.
    CHEMICAL ENGINEERING JOURNAL, 2023, 451