Forming Robust and Highly Li-Ion Conductive Interfaces in High-Performance Lithium Metal Batteries Using Chloroethylene Carbonate Additive

Citations

WEB OF SCIENCE

10
Citations

SCOPUS

11

초록

Developing high-rate Li metal batteries (LMBs) is challenging because of dendrite growth and irreversible parasitic reactions of the Li metal. Herein, a robust and highly ion-conductive solid electrolyte interphase (SEI) layer is designed on a Li metal anode and a Ni-rich layered cathode by incorporating chloroethylene carbonate (ClEC) as an additive in fluoroethylene carbonate-based electrolytes. ClEC induces the formation of LiCl, which facilitates Li-ion diffusion in the robust LiF-rich SEI layer, thereby improving the cycle stability of the Li metal anode and suppressing microcracking of the Ni-rich layered cathode, especially during charging and discharging at high current densities. By using the newly developed combination of electrolyte solution, an LMB featuring the Li[Ni0.78Co0.1Mn0.12]O2 cathode (2.3 mAh cmꠑ2, 0.1 C) affords a superior capacity retention of 80.2% over 400 cycles at high charge and discharge current densities of 2.0 C (3.6 mA cmꠑ2) and 5.0 C (9.0 mA cmꠑ2). This study provides insights into the use of ClEC as an electrolyte additive and highlights the importance of constructing robust and highly ion-conductive interfaces on both Li metal anodes and Ni-rich cathodes for high-performance LMBs.

키워드

chloroethylene carbonatefast cyclinglithium metal batteriesNi-rich cathodessolid electrolyte interphaseRICH LAYERED CATHODERECHARGEABLE BATTERIESANODESDENSITYSOLVENTSEI
제목
Forming Robust and Highly Li-Ion Conductive Interfaces in High-Performance Lithium Metal Batteries Using Chloroethylene Carbonate Additive
저자
김훈이수현박남영김재민Hwang, Jang-YeonSun, Yang-Kook
DOI
10.1002/aesr.202300151
발행일
2024-01
유형
Article; Early Access
저널명
ADVANCED ENERGY AND SUSTAINABILITY RESEARCH
5
1
페이지
1 ~ 9