Lithium-Rich Porous Aromatic Framework-Based Quasi-Solid Polymer Electrolyte for High-Performance Lithium Ion Batteries

被引:0
|
作者
Li, Zhangnan [1 ]
Wang, Liying [1 ]
Yu, Mengxuan [1 ]
Liu, Yuhan [1 ]
Liu, Baijun [2 ]
Sun, Zhaoyan [3 ]
Hu, Wei [1 ]
Zhu, Guangshan [1 ]
机构
[1] Faculty of Chemistry, Northeast Normal University, 5268 Renmin Street, Jilin, Changchun,130024, China
[2] Faculty of Chemistry, Jilin University, 2699 Qianjin Street, Changchun,130012, China
[3] State Key Laboratory of Polymer Physics and Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, 5625 Renmin Street, Changchun,130022, China
来源
ACS Applied Materials and Interfaces | 2022年 / 14卷 / 48期
基金
中国国家自然科学基金;
关键词
Activation energy - Aromatic polymers - Aromatization - Fluorine compounds - Ionic conduction in solids - Ionic conductivity - Ionic strength - Lithium-ion batteries - Polyelectrolytes - Solid electrolytes - Solid-State Batteries;
D O I
暂无
中图分类号
学科分类号
摘要
The development of solid polymer electrolytes (SPEs) with high ionic conductivity, wide electrochemical window, and high mechanical strength is the key factor to realize high-energy-density solid lithium ion batteries (SLIBs). Porous aromatic frameworks (PAFs) have the advantages of high porosity, easily functionalized molecular structure, and rigid stable framework, which fully meet the requirements of solid polymer electrolytes with high Li+capacity, fast Li+transport, and safety. Herein, a lithium-rich amidoxime (AO)-modified porous aromatic framework (PAF-170-AO) was obtained through the absorption of LiTFSI by amidoxime groups and abundant pores and then compounded with poly(vinylidene fluoride-co-hexafluoropropylene) (PVDF-HFP) to prepare a PAF-based quasi-solid polymer electrolyte (PAF-QSPE) with only tiny amounts of plasticizer (∼12 μL). The amidoxime groups of PAF-170-AO restricted the movement of the anions of LiTFSI through hydrogen bonding, which effectively promoted the dissociation and migration number of Li+(tLi+), reduced the concentration polarization, and inhibited the growth of lithium dendrites. The PAF-QSPE exhibited a high ionic conductivity of 1.75 × 10-4S cm-1and tLi+of 0.55 at room temperature. The activation energy was as low as 0.136 eV. Furthermore, the assembled SLIBs with the PAF-QSPE presented a discharge capacity of 163 mAh g-1at 0.2 C and a capacity retention rate of 96% after 350 cycles, illustrating a stable cycling performance. This work demonstrated the great application potential of lithium-rich PAFs in QSPEs. © 2022 American Chemical Society. All rights reserved.
引用
收藏
页码:53798 / 53807
相关论文
共 50 条
  • [41] Glassy Metal-Organic-Framework-Based Quasi-Solid-State Electrolyte for High-Performance Lithium-Metal Batteries
    Jiang, Guangshen
    Qu, Changzhen
    Xu, Fei
    Zhang, En
    Lu, Qiongqiong
    Cai, Xiaoru
    Hausdorf, Steffen
    Wang, Hongqiang
    Kaskel, Stefan
    ADVANCED FUNCTIONAL MATERIALS, 2021, 31 (43)
  • [42] Biodegradable Bacterial Cellulose-Supported Quasi-Solid Electrolyte for Lithium Batteries
    Yan, Mingxia
    Qu, Wenjie
    Su, Qingdong
    Chen, Shi
    Xing, Yi
    Huang, Yongxin
    Chen, Nan
    Li, Yuejiao
    Li, Li
    Wu, Feng
    Chen, Renjie
    ACS APPLIED MATERIALS & INTERFACES, 2020, 12 (12) : 13950 - 13958
  • [43] Quasi-Solid-State Polymer Electrolyte Based on Electrospun Polyacrylonitrile/Polysilsesquioxane Composite Nanofiber Membrane for High-Performance Lithium Batteries
    Liu, Caiyuan
    Hu, Jiemei
    Zhu, Yanan
    Yang, Yonggang
    Li, Yi
    Wu, Qi-Hui
    MATERIALS, 2022, 15 (21)
  • [44] An acrylate-based quasi-solid polymer electrolyte incorporating a novel dinitrile poly(ethylene glycol) plasticizer for lithium-ion batteries
    Kristian Leš
    Jens Schönewerk
    Jens Glenneberg
    Carmen-Simona Jordan
    Journal of Materials Science, 2022, 57 : 13496 - 13514
  • [45] An acrylate-based quasi-solid polymer electrolyte incorporating a novel dinitrile poly(ethylene glycol) plasticizer for lithium-ion batteries
    Les, Kristian
    Schoenewerk, Jens
    Glenneberg, Jens
    Jordan, Carmen-Simona
    JOURNAL OF MATERIALS SCIENCE, 2022, 57 (28) : 13496 - 13514
  • [46] Polyrotaxane-based electrolyte with excellent thermal stability for quasi-solid lithium metal batteries
    Jianmei Li
    Zijian Wang
    Qingsong Tong
    Luyi Yang
    Mengqi Zhu
    Hai Lin
    Feng Gao
    Jingzheng Weng
    Ionics, 2022, 28 : 3623 - 3634
  • [47] BIAN-Based Porous Organic Polymer as a High-Performance Anode for Lithium-Ion Batteries
    Mantripragada, Bharat Srimitra
    Badam, Rajashekar
    Matsumi, Noriyoshi
    ACS APPLIED ENERGY MATERIALS, 2022, 5 (05) : 6903 - 6912
  • [48] Polyrotaxane-based electrolyte with excellent thermal stability for quasi-solid lithium metal batteries
    Li, Jianmei
    Wang, Zijian
    Tong, Qingsong
    Yang, Luyi
    Zhu, Mengqi
    Lin, Hai
    Gao, Feng
    Weng, Jingzheng
    IONICS, 2022, 28 (08) : 3623 - 3634
  • [49] A design of Nafion-coated bilayered quasi-solid electrolyte for lithium-O2 batteries with high performance
    Hou, Yingfei
    Jiang, Lin
    Zhang, Yaoyao
    Qin, Zhiwen
    Jiang, Chi
    Wang, Ming
    CHINESE JOURNAL OF CHEMICAL ENGINEERING, 2021, 34 : 208 - 216
  • [50] Three-Dimensional Porous Alginate Fiber Membrane Reinforced PEO-Based Solid Polymer Electrolyte for Safe and High-Performance Lithium Ion Batteries
    Zeng, Fanyou
    Sun, Yuanyuan
    Hui, Bin
    Xia, Yanzhi
    Zou, Yihui
    Zhang, Xiaoli
    Yang, Dongjiang
    ACS APPLIED MATERIALS & INTERFACES, 2020, 12 (39) : 43805 - 43812