LiF-Rich Solid Electrolyte Interphase Formation by Establishing Sacrificial Layer on the Separator

  • Jin, Huding; 
  • Pyo, Seonmi; 
  • Seo, Harim; 
  • Cho, Jinil; 
  • Han, Junghyup; 
  • ... Yoo, Jeeyoung; 
  • 외 6명
Citations

WEB OF SCIENCE

28
Citations

SCOPUS

27

초록

The formation of a stable solid electrolyte interphase (SEI) layer is crucial for enhancing the safety and lifespan of Li metal batteries. Fundamentally, a homogeneous Li+ behavior by controlling the chemical reaction at the anode/electrolyte interface is the key to establishing a stable SEI layer. However, due to the highly reactive nature of Li metal anodes (LMAs), controlling the movement of Li+ at the anode/electrolyte interface remains challenging. Here, an advanced approach is proposed for coating a sacrificial layer called fluorinated self-assembled monolayer (FSL) on a boehmite-coated polyethylene (BPE) separator to form a stable SEI layer. By leveraging the strong affinity between the fluorine functional group and Li+, the rapid formation of a LiF-rich SEI layer in the cell production and early cycling stage is facilitated. This initial stable SEI formation promotes the subsequent homogeneous Li+ flux, thereby improving the LMA stability and yielding an enhanced battery lifespan. Further, the mechanism behind the stable SEI layer generation by controlling the Li+ dynamics through the FSL-treated BPE separator is comprehensively verified. Overall, this research offers significant contributions to the energy storage field by addressing challenges associated with LMAs, thus highlighting the importance of interfacial control in achieving a stable SEI layer. The controlled manipulation of Li+ movement by treating a fluorinated self-assembled monolayer as a sacrificial layer (FSL) on a boehmite-coated polyethylene (BPE) separator is demonstrated to establish a robust SEI layer. Due to the introduction of the FSL, a LiF-rich SEI is rapidly generated and deposited onto the LMA surface after cell assembly and 1st cycle stage. image

키워드

Li metal anode; LiF-rich SEI; sacrificial layer; self-assembled monolayer; solid electrolyte interphase (SEI); METAL ANODE; SURFACE MODIFICATION; LITHIUM; PERFORMANCE; BATTERIES; WETTABILITY; GEL
제목
LiF-Rich Solid Electrolyte Interphase Formation by Establishing Sacrificial Layer on the Separator
저자
Jin, Huding; Pyo, Seonmi; Seo, Harim; Cho, Jinil; Han, Junghyup; Han, Juyeon; Yun, Heejun; Kim, Heebae; Lee, Jeewon; Min, Byeongyun; Yoo, Jeeyoung; Kim, Youn Sang
DOI
10.1002/smll.202401928
발행일
2024-09
유형
Article
저널명
Small
권
20
호
36