High Performance of All-Solid-State Batteries with PEO:NaTFSI at 40 °C

被引:0
|
作者
Peta, Gayathri [1 ]
Samala, Nagaprasad Reddy [1 ]
Fayena-Greenstein, Miryam [1 ]
Elias, Yuval [1 ]
Aurbach, Doron [1 ]
机构
[1] Department of Chemistry, BINA—BIU, Institute for Nanotechnology and Advanced Materials, INIES—Israel National Institute for Energy Storage, Bar-Ilan University, Ramat Gan,5290002, Israel
关键词
Conducting polymers - Elastomers - Lithium-ion batteries - Melting point - Metal ions - Silicones - Sodium-ion batteries - Solid electrolytes - Solid-State Batteries;
D O I
10.1149/1945-7111/ad95c1
中图分类号
学科分类号
摘要
Developing polymer electrolytes as an alternative to aprotic liquid electrolytes for lithium and sodium-ion batteries aims to enhance their safety, durability, and cost. Among these, polyethylene oxide (PEO) is a favorite choice due to its wide availability, excellent versatility, and mechanical properties. PEO:NaTFSI and PEO:NaFSI are stable and efficient ion-conducting solid polymer electrolytes compared to other PEO:NaX matrices (for instance, X = [PF6]−, [ClO4]−). We tested Na/PEO:NaTFSI/NVP cells at low temperatures (40 °C) and carried out a series of electrochemical measurements to extract vital performance metrics such as diffusion coefficient, transference number, conductivity, and activation energy. Our findings emphasize the important role of the anions’ nature in the properties of polymeric electrolytes like those based on PEO, in which there are strong interactions between the ions and the oxygen atoms. Highly important are the interfacial interactions of the anions with the electrodes, which form surface species that determine stability and charge-transfer kinetics. Significant impact of TFSI anions on the cathode-electrolyte interfacial properties may explain the exceptional performance of sodium batteries at 40 °C, which is below the melting temperature of PEO. Our findings may open the door for an effective operation of solid-state batteries at room temperatures. © 2024 The Author(s). Published on behalf of The Electrochemical Society by IOP Publishing Limited.
引用
下载
收藏
相关论文
共 50 条
  • [21] Solvent-engineered synthesis of sulfide solid electrolytes for high performance all-solid-state batteries
    Choi, Ik-Hyeon
    Kim, Eunji
    Jo, Yung-Soo
    Hong, Jeong-Won
    Sung, Junghwan
    Seo, Jeongsuk
    Kim, Byung Gon
    Park, Jun -ho
    Lee, Yoo-Jin
    Ha, Yoon-Cheol
    Kim, Doohun
    Lee, Jin Hong
    Park, Jun -Woo
    JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY, 2023, 121 : 107 - 113
  • [22] Designing Lithium Argyrodite Solid-State Electrolytes for High-Performance All-Solid-State Lithium Batteries
    Li, Chongxing
    Zhang, Shuxian
    Miao, Xianguang
    Wang, Cong
    Wang, Chengxiang
    Zhang, Zhiwei
    Wang, Rutao
    Yin, Longwei
    BATTERIES & SUPERCAPS, 2022, 5 (03)
  • [23] Influence of Electrode Structuring Techniques on the Performance of All-Solid-State Batteries
    Clausnitzer, Moritz
    Danner, Timo
    Prifling, Benedikt
    Neumann, Matthias
    Schmidt, Volker
    Latz, Arnulf
    BATTERIES & SUPERCAPS, 2024, 7 (04)
  • [24] Enabling Stable Cycling of 4.2 V High-Voltage All-Solid-State Batteries with PEO-Based Solid Electrolyte
    Qiu, Jiliang
    Liu, Xinyu
    Chen, Rusong
    Li, Qinghao
    Wang, Yi
    Chen, Penghao
    Gan, Luyu
    Lee, Sang-Jun
    Nordlund, Dennis
    Liu, Yijin
    Yu, Xiqian
    Bai, Xuedong
    Li, Hong
    Chen, Liquan
    ADVANCED FUNCTIONAL MATERIALS, 2020, 30 (22)
  • [25] Influence of Electrode Structuring Techniques on the Performance of All-Solid-State Batteries
    Clausnitzer, Moritz
    Danner, Timo
    Prifling, Benedikt
    Neumann, Matthias
    Schmidt, Volker
    Latz, Arnulf
    Batteries and Supercaps, 2024, 7 (04):
  • [26] Challenges and Improvements of All-Solid-State Batteries
    Jang, Jihyun
    JOURNAL OF THE KOREAN CHEMICAL SOCIETY-DAEHAN HWAHAK HOE JEE, 2023, 67 (03): : 165 - 174
  • [27] Grain Boundary Electronic Insulation for High-Performance All-Solid-State Lithium Batteries
    Yang, Xiaofei
    Gao, Xuejie
    Jiang, Ming
    Luo, Jing
    Yan, Jitong
    Fu, Jiamin
    Duan, Hui
    Zhao, Shangqian
    Tang, Yongfu
    Yang, Rong
    Li, Ruying
    Wang, Jiantao
    Huang, Huan
    Singh, Chandra Veer
    Sun, Xueliang
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2023, 62 (05)
  • [28] All-solid-state batteries and their remaining challenges
    Kasemchainan J.
    Bruce P.G.
    2018, Johnson Matthey Public Limited Company (62): : 177 - 180
  • [29] Metastable Materials for All-Solid-State Batteries
    Sakuda, Atsushi
    Hayashi, Akitoshi
    Tatsumisago, Masahiro
    ELECTROCHEMISTRY, 2019, 87 (05) : 247 - 250
  • [30] High performance all-solid-state lithium/sulfur batteries using lithium argyrodite electrolyte
    Chen, Maohua
    Adams, Stefan
    JOURNAL OF SOLID STATE ELECTROCHEMISTRY, 2015, 19 (03) : 697 - 702