Authors | Qianna Nie,Wenlei Luo,Yong Li,Cheng Yang,Haijuan Pei,Rui Guo,Wei Wang,فرشاد بوربور اژدری,Jiangxuan Song |
---|---|
Journal | nano micro small |
Page number | 1 |
Volume number | 1 |
IF | 13.3 |
Paper Type | Full Paper |
Published At | 2023-07-20 |
Journal Grade | Scientific - research |
Journal Type | Electronic |
Journal Country | Iran, Islamic Republic Of |
Journal Index | SCOPUS ,JCR |
Abstract
Lithium metal batteries (LMBs) are the most promising high energy density energy storage technologies for electric vehicles, military, and aerospace applications. LMBs require further improvement to operate efficiently when chronically or routinely exposed to high temperatures. Electrolyte engineering with high temperature tolerance and electrode compatibility has been essential to the development of LMBs. In this review, the primary obstacles to achieving high-temperature LMBs are first explored. Subsequently, electrolyte tailoring options, such as lithium salt optimization, solvation structure modification, and the addition of additives are reviewed in detail. In addition, the feasibility of utilizing LMBs at high temperatures has been investigated. In conclusion, this study provides insights and perspectives for future research on electrolyte design at high temperatures.
tags: electrolytes, high temperatures, lithium metal batteries