An ultra-thin polymer electrolyte for 4.5 V high voltage LiCoO2 quasi-solid-state battery

被引:27
|
作者
Ye, Xue [1 ]
Liang, Jianneng [2 ]
Hu, Jiangtao [2 ]
Wu, Dazhuan [1 ]
Li, Yongliang [2 ]
Ouyang, Xiaoping [1 ]
Zhang, Qianling [2 ]
Ren, Xiangzhong [2 ]
Liu, Jianhong [2 ]
机构
[1] Zhejiang Univ, Coll Energy Engn, Hangzhou 310058, Peoples R China
[2] Shenzhen Univ, Coll Chem & Environm Engn, Shenzhen 518060, Peoples R China
关键词
Solid-state battery; Thin film solid electrolyte; High voltage cathode; High energy density; Interface; LITHIUM METAL ANODE; HIGH-ENERGY-DENSITY; CATHODE MATERIALS; RICH CATHODE; STABILITY; INTERFACE; SEPARATOR;
D O I
10.1016/j.cej.2022.140846
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
To achieve safe and high energy density solid-state batteries (SSBs), the weight of solid-state electrolyte (SSE) should be minimized and a high voltage and high specific capacity cathode should be used. Polyethylene oxide (PEO)-based polymer electrolytes (PEs) has been identified as the optimal SSE for SSBs owing to their versatile advantages. However, fabricating ultra-thin and high voltage stable PEO-based PEs is still challenging. Herein, an ultra-thin (8.1 mu m) blending polymer electrolyte (BPE) is designed through blending PEO, Polymethyl methac-rylate (PMMA) and Poly(vinylidene fluoride-hexafluoropropylene) (PVDF-HFP), and complexing with Succino-nitrile (SN), Fluoroethylene carbonate (FEC) and LiTFSI plasticizers. Based on this design, Li|BPE|LiFePO4 quasi-solid-state battery (QSSB) can operate for 250 cycles with a capacity retention of 92.8%, 4.5 V high voltage Li| BPE|LiCoO2 QSSB exhibits 87% capacity retention after 80 cycles, with an average Coulombic efficiency >= 99.8%, which is much superior than 4.5 V Li|PEO|LiCoO2 SSB, whose capacity rapidly decays to 0 mAh/g after a dezen of cycles. DFT calculation suggests that blending PEO, PMMA and PVDF-HFP increase the electro-chemical oxidation tolerance. Interface study by TEM and XPS discloses PEO-LiTFSI/LiCoO2 interface is unstable with a big amount of decomposed products from PEO-LiTFSI and from LiCoO2, while BPE/LiCoO2 interface is more stable without obvious decomposition, indicating the promising application of BPE for high energy density QSSBs.
引用
收藏
页数:10
相关论文
共 50 条
  • [1] Quasi-Solid-State Na-O2 Battery with Composite Polymer Electrolyte
    Iputera, Kevin
    Tsai, Cheng-Fu
    Huang, Jheng-Yi
    Wei, Da-Hua
    Liu, Ru-Shi
    ACS APPLIED MATERIALS & INTERFACES, 2024, 16 (28) : 36289 - 36294
  • [2] Research progress of functional electrolyte for high-voltage LiCoO2 battery
    Peng, Dan
    Lu, Junjie
    Ni, Wenjing
    Yang, Yuan
    Wang, Jinglun
    Huagong Xuebao/CIESC Journal, 2024, 75 (09): : 3028 - 3040
  • [3] High performance polyimide-based separator for 4.5V high voltage LiCoO2 battery with superior safety
    Yang, Kecong
    Liu, Zelin
    Chai, Jingchao
    Zheng, Yun
    Fu, Xiangnan
    Shen, Yang Huan
    Chen, Jia
    Liu, Zhihong
    Shi, Shengwei
    MATERIALS CHEMISTRY AND PHYSICS, 2022, 282
  • [4] APPLICATION OF SOLID-POLYMER ELECTROLYTE IN LITHIUM BATTERIES - ULTRA-THIN FILM BATTERY
    NODA, T
    KATO, S
    YOSHIHISA, Y
    TAKEUCHI, K
    MURATA, K
    JOURNAL OF POWER SOURCES, 1993, 43 (1-3) : 89 - 99
  • [5] A high-performance rechargeable Li–O2 battery with quasi-solid-state electrolyte
    彭佳悦
    黄杰
    李文俊
    王怡
    禹习谦
    胡勇胜
    陈立泉
    李泓
    Chinese Physics B, 2018, 27 (07) : 561 - 565
  • [6] A high-performance rechargeable Li-O2 battery with quasi-solid-state electrolyte
    Peng, Jia-Yue
    Huang, Jie
    Li, Wen-Jun
    Wang, Yi
    Yu, Xiqian
    Hu, Yongsheng
    Chen, Liquan
    Li, Hong
    CHINESE PHYSICS B, 2018, 27 (07)
  • [7] Integration of Porous High-Loading Electrode and Gel Polymer Electrolyte for High-Performance Quasi-Solid-State Battery
    Nie, Lu
    Gao, Runhua
    Zhang, Mengtian
    Zhu, Yanfei
    Wu, Xinru
    Lao, Zhoujie
    Zhou, Guangmin
    ADVANCED ENERGY MATERIALS, 2024, 14 (04)
  • [8] Sustainable upcycling of spent LiCoO2 to an ultra-stable battery cathode at high voltage
    Wang, Junxiong
    Jia, Kai
    Ma, Jun
    Liang, Zheng
    Zhuang, Zhaofeng
    Zhao, Yun
    Li, Baohua
    Zhou, Guangmin
    Cheng, Hui-Ming
    NATURE SUSTAINABILITY, 2023, 6 (07) : 797 - 805
  • [9] Sustainable upcycling of spent LiCoO2 to an ultra-stable battery cathode at high voltage
    Junxiong Wang
    Kai Jia
    Jun Ma
    Zheng Liang
    Zhaofeng Zhuang
    Yun Zhao
    Baohua Li
    Guangmin Zhou
    Hui-Ming Cheng
    Nature Sustainability, 2023, 6 : 797 - 805
  • [10] Quasi-Solid-State All-V2O5 Battery
    Wang, Guolong
    Cui, Xiaoqian
    Yang, Zhuofan
    Liu, Jiamei
    Shi, Xiaowei
    Zhang, Yan
    Zhao, Zehua
    Wang, Jingqi
    Song, Jiale
    Wang, Xiao
    Li, Yanhuai
    Song, Zhongxiao
    Li, Lei
    SMALL, 2024, 20 (22)