Anode interface-stabilizing dry process employing a binary binder system for ultra-thick and durable battery electrode fabrication
  • Lee, Juhyun
  • Son, Chae Yeong
  • Han, Seungmin
  • Yang, Subi
  • Kim, Patrick Joohyun
  • 외 4명
Citations

WEB OF SCIENCE

20
Citations

SCOPUS

19

초록

Polytetrafluoroethylene (PTFE)-based dry process has gained attention in the battery industry owing to their sustainability, cost-effectiveness, and ability to fabricate high loading electrodes. However, the electrochemical instability of PTFE in anodic environments causes significant capacity loss, hindering the development of high-performance dry-processed anodes. In this study, a binary binder system of PTFE and polyvinylpyrrolidone (PVP) is proposed to prevent direct contact between graphite and PTFE, mitigating unwanted interphase evolution. This strategy improves the mechanical integrity of the electrode. It maintains the binding force between the active materials and PTFE binders. PVP also forms a robust inorganic-rich SEI, enhancing Li-ion kinetics and interfacial stability. Consequently, dry-processed graphite with PVP achieved ultra-high loading anodes (similar to 10 mAh cm(-2)) with excellent cycle stability over 200 cycles in full cells coupled with LiNi0.8Co0.1Mn0.1O2 cathodes. This paper presents a cost-effective, high-loading electrode fabrication process and an eco-friendly approach for large-scale electrification.

키워드

Lithium-ion batteryDry-processed graphite anodeHigh-loadingPolytetrafluoroethylenePolyvinylpyrrolidoneLITHIUMSEIGROWTHCOST
제목
Anode interface-stabilizing dry process employing a binary binder system for ultra-thick and durable battery electrode fabrication
저자
Lee, JuhyunSon, Chae YeongHan, SeungminYang, SubiKim, Patrick JoohyunLee, DongsooLee, Jung WooRyu, Won-HeeChoi, Junghyun
DOI
10.1016/j.cej.2024.158271
발행일
2025-01
유형
Article
저널명
Chemical Engineering Journal
503