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Lithium-Ion Intercalation into Graphite in SO2-Based Inorganic Electrolyte toward High-Rate-Capable and Safe Lithium-Ion Batteries

机译:锂离子嵌入到SO2基无机电解质中的石墨,朝向高速率和安全的锂离子电池

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摘要

Herein, we have identified that lithium ions in an SO2-based inorganic electrolyte reversibly intercalate and deintercalate into/out of graphite electrode using ex situ X-ray diffraction and various electrochemical methods. X-ray photoelectron spectroscopy shows that the solid electrolyte interphase on the graphite electrode is mainly composed of inorganic compounds, such as LiCl and lithium sulfur-oxy compounds. Graphite electrode in SO2-based inorganic electrolyte has stable capacity retention up to 100 cycles and outstanding rate capability performance. This can be attributed to low interfacial impedance and high ionic conductivity of SO2-based inorganic electrolyte, which are superior to those of conventional organic electrolytes. Considering the remarkable rate capability and intrinsically nonflammable properties of the electrolyte, use of graphite and an SO2 electrolyte will likely facilitate the development of advanced lithium-ion batteries.
机译:在此,我们已经鉴定了SO2的无机电解质中的锂离子可逆地嵌入并使用Ex原位X射线衍射和各种电化学方法将其嵌入/退出石墨电极中。 X射线光电子能谱表明石墨电极上的固体电解质相互作用主要由无机化合物组成,例如LiCl和锂硫 - 氧化物化合物。 基于SO2的无机电解质中的石墨电极具有稳定的容量保留,可保持100个循环和出色的速率能力性能。 这可以归因于SO2基无机电解质的低界面阻抗和高离子电导率,其优于常规有机电解质。 考虑到电解质的显着速率和本质不易燃性能,石墨的使用和SO2电解质可能有助于开发先进的锂离子电池。

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