论文标题
将纳米级结构与固态电池电极中固体电解质相互作用的电化学特性相关联
Correlating Nanoscale Structure with Electrochemical Property of Solid Electrolyte Interphases in Solid-State Battery Electrodes
论文作者
论文摘要
在这里,我们将固体电解质相比(SEI)的纳米级形态和化学组成与基于石墨的复合电极的电化学特性相关联。分析了使用电化学应变显微镜(ESM)和X射线光电子光谱(XPS),分析电极上SEI层中化学成分和形态(LI和F分布)的变化,分析了固体电解质含量的函数。结果,我们发现SEI层的电极,LI和F分布的形态变化与库仑效率之间存在很强的相关性。该相关性决定了复合电极表面的最佳组成,该组合能够最大程度地提高电极上固体电解质的物理和化学均匀性,这是增加固态电池中电化学性能的关键参数。
Here, we correlate the nanoscale morphology and chemical composition of solid electrolyte interphases (SEI) with the electrochemical property of graphite-based composite electrodes. Using electrochemical strain microscopy (ESM) and X-ray photoelectron spectroscopy (XPS), changes of chemical composition and morphology (Li and F distribution) in SEI layers on the electrodes as a function of solid electrolyte contents are analyzed. As a result, we find a strong correlation between morphological variations on the electrode, Li and F distribution in SEI layer, and Coulomb efficiency. This correlation determines the optimum composition of the composite electrode surface that can maximize the physical and chemical uniformity of the solid electrolyte on the electrode, which is a key parameter to increase electrochemical performance in solid-state batteries.