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Low-temperature all-solid-state lithium-ion batteries based on a di-cross-linked starch solid electrolyte

机译:基于二交联淀粉固体电解质的低温全固态锂离子电池

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The preparation of a low-temperature solid electrolyte is a challenge for the commercialization of the all-solid-state lithium-ion battery (ASSLIB). Here we report a starch-based solid electrolyte that displays phenomenal electrochemical properties below room temperature (RT). The starch host of the electrolyte is synthesized by two cross-linking reactions, which provide sufficient and orderly binding sites for the lithium salt to dissolve. At 25 °C, the solid electrolyte has exceptional ionic conductivity ( σ , 3.10 × 10 ~(?4) S cm ~(?1) ), lithium-ion transfer number ( t ~(+) , 0.82) and decomposition potential (dP, 4.91 V). At ?20 °C, it still has outstanding σ (3.10 × 10 ~(?5) S cm ~(?1) ), t ~(+) (0.72) and dP (5.50 V). The LiFePO _(4) ASSLIB assembled with the electrolyte exhibits unique specific capacity and long cycling life below RT, and the LiNi _(0.8) Co _(0.1) Mn _(0.1) O _(2) ASSLIB can operate at 4.3 V and 0 °C. This work provides a solution to solve the current challenges of ASSLIBs to widen their scope of applications.
机译:低温固体电解质的制备是全​​固态锂离子电池(Asslib)的商业化的挑战。在这里,我们报告了一种基于淀粉的固体电解质,其显示出低于室温(RT)的现象电化学性质。通过两个交联反应合成电解质的淀粉宿主,其为锂盐提供足够的有序的粘合位点以溶解。在25℃下,固体电解质具有出色的离子电导率(σ,3.10×10〜(α4)Scm〜(α1)),锂离子转移数(T〜(+),0.82)和分解电位( DP,4.91 v)。在?20°C时,它仍然具有出色的σ(3.10×10〜(?5)Scm〜(α1)),T〜(+)(0.72)和DP(5.50 V)。使用电解质组装的LiFepo _(4)asslib在室温下表现出独特的特定容量和长的循环寿命,LINI _(0.8)CO _(0.1)MN _(0.1)O _(2)Asslib可以在4.3V下运行和0°C。这项工作提供了解决asslibs挑战扩大应用范围的解决方案。

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