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Highly Stable Lithium Metal Batteries Enabled by Tuning the Molecular Polarity of Diluents in Localized High-Concentration Electrolytes
被引:7
作者:
Yang, Xin-Tao
[1
]
Han, Chong
[1
]
Xie, Yi-Meng
[1
]
Fang, Rong
[1
]
Zheng, Shisheng
[1
]
Tian, Jing-Hua
[2
]
Lin, Xiu-Mei
[3
]
Zhang, Hua
[1
]
Mao, Bing-Wei
[1
]
Gu, Yu
[1
]
Wang, Yao-Hui
[1
]
Li, Jian-Feng
[1
,2
,3
]
机构:
[1] Xiamen Univ, Coll Mat, Coll Chem & Chem Engn, State Key Lab Phys Chem Solid Surfaces,iChEM,Coll, Xiamen 361005, Peoples R China
[2] Innovat Lab Sci & Technol Energy Mat Fujian Prov I, Xiamen 361005, Peoples R China
[3] Minnan Normal Univ, Dept Chem & Environm Sci, Fujian Prov Univ Key Lab Analyt Sci, Zhangzhou 363000, Peoples R China
来源:
基金:
中国国家自然科学基金;
关键词:
lithium metal batteries;
localized high-concentration electrolyte;
solid-electrolyte interphase;
strong-polarity diluent;
LI-ION;
ANODES;
D O I:
10.1002/smll.202311393
中图分类号:
O6 [化学];
学科分类号:
0703 ;
摘要:
Electrolyte plays a crucial role in ensuring stable operation of lithium metal batteries (LMBs). Localized high-concentration electrolytes (LHCEs) have the potential to form a robust solid-electrolyte interphase (SEI) and mitigate Li dendrite growth, making them a highly promising electrolyte option. However, the principles governing the selection of diluents, a crucial component in LHCE, have not been clearly determined, hampering the advancement of such a type of electrolyte systems. Herein, the diluents from the perspective of molecular polarity are rationally designed and developed. A moderately fluorinated solvent, 1-(1,1,2,2-tetrafluoroethoxy)propane (TNE), is employed as a diluent to create a novel LHCE. The unique molecular structure of TNE enhances the intrinsic dipole moment, thereby altering solvent interactions and the coordination environment of Li-ions in LHCE. The achieved solvation structure not only enhances the bulk properties of LHCE, but also facilitates the formation of more stable anion-derived SEIs featured with a higher proportion of inorganic species. Consequently, the corresponding full cells of both Li||LiFePO4 and Li||LiNi0.8Co0.1Mn0.1O2 cells utilizing Li thin-film anodes exhibit extended long-term stability with significantly improved average Coulombic efficiency. This work offers new insights into the functions of diluents in LHCEs and provides direction for further optimizing the LHCEs for LMBs. A novel moderately fluorinated polarity diluent is proposed to develop localized high-concentration electrolyte. The electrolyte showcases improved ionic conductivity and features a distinct solvation structure characterized by a high anion-to-solvent ratio, which enables the formation of a stable anion-derived solid-electrolyte interphase. The compatibility of this electrolyte with lithium anodes and high-voltage cathodes is demonstrated, reflecting superior cycling stability. image
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