锂(药物)
动力学
金属锂
化学动力学
化学
溶剂
金属
锂同位素
无机化学
材料科学
放射化学
物理化学
离子
有机化学
电解质
电极
物理
离子交换
医学
量子力学
内分泌学
作者
Haifeng Tu,Zhongshi He,Ao Sun,Farwa Mushtaq,Linge Li,Zhicheng Wang,Yifan Kong,Rong Huang,Hongzhen Lin,Wanfei Li,Fangmin Ye,Pan Xue,Meinan Liu
出处
期刊:Nano Letters
[American Chemical Society]
日期:2024-05-02
卷期号:24 (19): 5714-5721
被引量:1
标识
DOI:10.1021/acs.nanolett.4c00501
摘要
The structure of solvated Li+ has a significant influence on the electrolyte/electrode interphase (EEI) components and desolvation energy barrier, which are two key factors in determining the Li+ diffusion kinetics in lithium metal batteries. Herein, the "solvent activity" concept is proposed to quantitatively describe the correlation between the electrolyte elements and the structure of solvated Li+. Through fitting the correlation of the electrode potential and solvent concentration, we suggest a "low-activity-solvent" electrolyte (LASE) system for deriving a stable inorganic-rich EEI. Nano LiF particles, as a model, were used to capture free solvent molecules for the formation of a LASE system. This advanced LASE not only exhibits outstanding antidendrite growth behavior but also delivers an impressive performance in Li/LiNi0.8Co0.1Mn0.1O2 cells (a capacity of 169 mAh g–1 after 250 cycles at 0.5 C).
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