Electrodeposition-guided pre-passivation of Li-metal anode to enable long stable cycling of practical Li-metal batteries
- Authors
- Seo, Jiyeon; Jeong, Wooyoung; Lim, Minhong; Choi, Bokyung; Park, Sanghyeon; Jo, Youngseong; Lee, Jong-Won; Lee, Hongkyung
- Issue Date
- Jun-2023
- Publisher
- Elsevier BV
- Keywords
- Electrodeposition; Lithium metal anode; Lithium metal batteries; Native passivation layer
- Citation
- Energy Storage Materials, v.60, pp 1 - 10
- Pages
- 10
- Indexed
- SCIE
SCOPUS
- Journal Title
- Energy Storage Materials
- Volume
- 60
- Start Page
- 1
- End Page
- 10
- URI
- https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/192413
- DOI
- 10.1016/j.ensm.2023.102827
- ISSN
- 2405-8297
2405-8289
- Abstract
- Ultrathin, large-area Li metal anodes (LMAs) are essential for high-energy Li-metal batteries (LMBs). However, most commercially manufactured LMAs (M-Li) form a native passivation layer (NPL) during manufacturing. Intrinsically non-uniform NPL can initiate sporadic Li dendrite growth and the chemical/structural deterioration of LMAs. This study presents an electrochemical pre-passivation method to build an electrolyte-derived native layer (ENL) using electrodeposited Li (ED-Li). Using localized high-concentration electrolytes and post-calendering, ED-Li can build a Li2CO3-less, fluorinated ENL and decrease the surface roughness. Herein, ED-Li facilitates Li nucleation during earlier Li plating owing to the electrolyte-compatible ENL, and alleviates pitting during subsequent Li stripping, thereby mitigating LMA swelling. ED-Li improves the cycling stability of Li||NMC622 cells to outperform M-Li, which is further validated using different electrolytes under practical conditions, demonstrating its potential for use as the starting LMA in post-treatment approaches, such as protective layer coating and electrolyte-driven passivation.
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