多硫化物
反应性(心理学)
硫黄
锂(药物)
硝酸锂
锂硫电池
材料科学
硝酸盐
无机化学
化学
离子
化学工程
电化学
冶金
有机化学
离子键合
物理化学
工程类
电解质
医学
替代医学
电极
病理
内分泌学
作者
Muhammad Mominur Rahman,Arthur Ronne,Nan Wang,Yanyan Du,Enyuan Hu
出处
期刊:ACS energy letters
[American Chemical Society]
日期:2024-04-08
卷期号:9 (5): 2024-2030
标识
DOI:10.1021/acsenergylett.4c00453
摘要
LiNO3 is a common electrolyte additive in Li–S batteries, but its stabilizing effect is not well-understood due to the complex electrolyte chemistry. This complexity often hampers the clear characterization and interpretation of data. Herein, we explore the LiNO3 reactivity with polysulfide through in operando sulfur K-edge spectroscopy, using a sulfur-free electrolyte with LiNO3 as the sole salt. We reveal a spatially progressing chemical reaction influenced by the polysulfide concentration gradient. Polysulfides are electrochemically generated near the sulfur cathode, leading to a high local concentration. As a result, they are incompletely oxidized by LiNO3 to sulfites, which are gradually further oxidized into sulfonates and sulfates. Conversely, polysulfides near the anode side have a lower local concentration as they are diffused from the cathode side, thus leading to more highly oxidized species like sulfonates and sulfates. These reaction products are stable during electrochemical cycling, suggesting their capabilities to passivate the electrodes and contribute to the cycling stabilities of Li–S batteries.
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