电解质
锂(药物)
溶剂化
相间
阴极
扩散
金属
吸附
无机化学
电池(电)
化学
化学工程
离子
电化学
碳酸乙烯酯
阳极
锂离子电池
法拉第效率
碳酸丙烯酯
材料科学
金属锂
物理化学
电极
有机化学
热力学
物理
功率(物理)
生物
医学
遗传学
内分泌学
工程类
作者
Fang Li,Jian He,Jiandong Liu,Mingguang Wu,Yuyang Hou,Huaping Wang,Shihan Qi,Quanhui Liu,Jiawen Hu,Jianmin Ma
标识
DOI:10.1002/anie.202013993
摘要
Abstract The structures and components of solid electrolyte interphase (SEI) are extremely important to influence the performance of full cells, which is determined by the formulation of electrolyte used. However, it is still challenging to control the formation of high‐quality SEI from structures to components. Herein, we designed bisfluoroacetamide (BFA) as the electrolyte additive for the construction of a gradient solid electrolyte interphase (SEI) structure that consists of a lithophilic surface with C−F bonds to uniformly capture Li ions and a LiF‐rich bottom layer to guide the rapid transportation of Li ions, endowing the homogeneous deposition of Li ions. Moreover, the BFA molecule changes the Li + solvation structure by reducing free solvents in electrolyte to improve the antioxidant properties of electrolyte and prevent the extensive degradation of electrolyte on the cathode surface, which can make a superior cathode electrolyte interphase (CEI) with high‐content LiF.
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