Evaluation of the Polypyrrole Coupling Mode for High-Performance Dual-Ion Batteries

被引:1
|
作者
Chen, Xuezheng [1 ]
Chen, Wen [1 ]
Hong, Jianhua [1 ]
Zhang, Cancan [1 ]
Yu, Feng [2 ]
Chen, Yong [2 ]
机构
[1] Hainan Univ, State Key Lab Marine Resource Utilizat South China, Hainan Prov Key Lab Res Utilizat Si Zr Ti Resource, Haikou 570228, Peoples R China
[2] Foshan Univ, Sch Mat & Energy, Guangdong Key Lab Hydrogen Energy Technol, Foshan 528000, Peoples R China
基金
中国国家自然科学基金;
关键词
polypyrrole; conjugate structure; couplingmode; capacity; doping/dedoping; POLYMERIZATION; NANOCOMPOSITES; ELECTRODE; CAPACITANCE; STABILITY; COMPOSITE; PYRROLE; CARBON; FILMS; XPS;
D O I
10.1021/acsami.4c11750
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Due to the advantages of large interstitial sites, antisolubility, and reversible insertion and extraction of anions, polypyrrole (PPy) has become an excellent P-type electrode material for dual-ion batteries. Unfortunately, PPy electrodes inevitably suffer from low specific capacity and poor cycle stability because of structural disintegration during repeated cycling as well as poor doping ability brought on by aggregation or cross-linking within the PPy chain. In this work, PPy with different proportions of coupling mode (alpha-alpha, alpha-beta, or beta-beta coupling) was derived from different preparation methods. Among them, PPy derived from the interfacial frozen polymerization method (I-PPy) is dominated by the alpha-alpha coupling mode and possesses the best anion doping ability and the highest specific capacity of 119 mAh g(-1) at 100 mA g(-1) compared with PPy derived from electrochemical deposition (E-PPy) and chemical oxidation method (C-PPy) (both less than 40 mAh g(-1)). This work verifies that increasing the proportion of the alpha-alpha coupling mode in the PPy electrode is a useful strategy to enhance the anion doping ability and capacity of dual-ion batteries.
引用
收藏
页码:53894 / 53903
页数:10
相关论文
共 50 条
  • [21] Ion pre-intercalation and OER modified carbon fiber paper towards high-performance cathode for dual-ion batteries
    Shi, Xiaoyuan
    Yang, Yue
    Zhu, Guangshan
    CERAMICS INTERNATIONAL, 2020, 46 (09) : 13835 - 13840
  • [22] High-Performance Dual-Ion Battery Based on a Layered Tin Disulfide Anode
    Fang, Yao-Bing
    Zheng, Wen
    Hu, Tao
    Li, Li
    Yuan, Wen-Hui
    ACS OMEGA, 2022, 7 (09): : 7616 - 7624
  • [23] Freestanding Cathode Electrode Design for High-Performance Sodium Dual-Ion Battery
    Liao, Hsiang-Ju
    Chen, Yu-Mei
    Kao, Yu -Ting
    An, Ji-Yao
    Lai, Ying-Huang
    Wang, Di-Yan
    JOURNAL OF PHYSICAL CHEMISTRY C, 2017, 121 (44): : 24463 - 24469
  • [24] Performance of carbon xerogels as anodes for sodium dual-ion batteries
    Lobato, Belen
    Cuesta, Nuria
    Camean, Ignacio
    Flores-Lopez, Samantha L.
    Rey-Raap, Natalia
    Arenillas, Ana
    Garcia, Ana B.
    ELECTROCHIMICA ACTA, 2024, 489
  • [25] Building better dual-ion batteries
    Kostiantyn V. Kravchyk
    Maksym V. Kovalenko
    MRS Energy & Sustainability, 2020, 7
  • [26] Phosphorus-doped porous hollow carbon nanorods for high-performance sodium-based dual-ion batteries
    Wang, Xiaoyan
    Wang, Shaofeng
    Shen, Kaixiang
    He, Shenggong
    Hou, Xianhua
    Chen, Fuming
    JOURNAL OF MATERIALS CHEMISTRY A, 2020, 8 (07) : 4007 - 4016
  • [27] Bubble-Sheet-Like Interface Design with an Ultrastable Solid Electrolyte Layer for High-Performance Dual-Ion Batteries
    Qin, Panpan
    Wang, Meng
    Li, Na
    Zhu, Haili
    Ding, Xuan
    Tang, Yongbing
    ADVANCED MATERIALS, 2017, 29 (17)
  • [28] Reversible multi-electron redox chemistry of organic salt as anode for high-performance Li-ion/dual-ion batteries
    Zhang, Fei
    Wu, Miaomiao
    Wang, Xingchao
    Xiang, Qian
    Wu, Yan
    Ding, Juan
    Sun, Ying
    CHEMICAL ENGINEERING JOURNAL, 2023, 457
  • [29] A Hydrocarbon Cathode for Dual-Ion Batteries
    Rodriguez-Perez, Ismael A.
    Jian, Zelang
    Waldenmaier, Pieter K.
    Palmisano, Joseph W.
    Chandrabose, Raghu Subash
    Wang, Xingfeng
    Lerner, Michael M.
    Carter, Rich G.
    Ji, Xiulei
    ACS ENERGY LETTERS, 2016, 1 (04): : 719 - 723
  • [30] Building better dual-ion batteries
    Kravchyk, Kostiantyn V.
    Kovalenko, Maksym V.
    MRS ENERGY & SUSTAINABILITY, 2020, 7 (1)