4.2 Article

In Situ Copolymerizated Gel Polymer Electrolyte with Cross-Linked Network for Sodium-Ion Batteries

期刊

CCS CHEMISTRY
卷 2, 期 1, 页码 589-597

出版社

CHINESE CHEMICAL SOC
DOI: 10.31635/ccschem.019.20190055

关键词

sodium-ion batteries; gel polymer electrolytes; full-cell; in situ polymerization; cationic mechanism

资金

  1. Basic Science Center Project of National Natural Science Foundation of China [51788104]
  2. National Natural Science Foundation of China [51772301, 21773264]
  3. National Key R&D Program of China [2016YFA0202500]
  4. Transformational Technologies for Clean Energy and Demonstration, Strategic Priority Research Program of the Chinese Academy of Sciences [XDA 21070300]
  5. Postdoctoral Science Foundation [2017M620914]

向作者/读者索取更多资源

High thermal stability, nonflammability, and no liquid leakage are indispensable capabilities for electrolytes in sodium-ion batteries toward large-scale energy storage systems. The use of solid-state or gel polymer electrolytes has proven to be one of the enabling tools to bring about these advancements; however, their application suffer from tedious synthesis procedure and/or lowionic transport to ensure a battery operation. Herein, a novel gel polymer electrolyte with a cross-linked polyether network (GPE-CPN) was crafted through a self-catalyzed strategy, where in situ copolymerization of two monomers, 1,3-dioxolane and trimethylolpropane triglycidyl ether is realized successfully, with the use of sodium hexafluorophosphate (NaPF6) as an initiator, at room temperature. We demonstrate that the resultant GPE-CPN possesses a superior electrochemical stability window up to 4 V versus Na+/Na, a considerable ionic conductivity, of 8.2 x 10(-4)S cm(-1) at room temperature, which is a capability good enough to suppress the growth of sodium dendrites and thus, stabilize the interface of electrolyte/ sodium anode. Considering the benefit from its facile fabrication and superior characteristics, the asgenerated GPE-CPN reveals a potential application for future rechargeable sodium batteries.

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