Aug, 31, 2024

Vol.57 No.4

학회 연락처

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  • The Korean Society of Surface Science and Engineering
  • Volume 57(2); 2024
  • Article

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The Korean Society of Surface Science and Engineering 2024;57(2):115-124. Published online: May, 16, 2024

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리튬 이온 배터리 음극에서 비닐렌 카보네이트가 매개하는 고체 전해질 계면 형성 메커니즘 연구

  • 이진희a, 정지윤a, 하재윤a,b, 김용태c,*, 최진섭a,b,*
    a인하대학교 화학·화학공학융합학과, b지속가능한 에너지 부품소재 핵심연구지원센터 c전남대학교 화공생명공학과
초록

In advancing Li-ion battery (LIB) technology, the solid electrolyte interface (SEI) layer is critical for enhancing battery longevity and performance. Formed during the charging process, the SEI layer is essential for controlling ion transport and maintaining electrode stability. This research provides a detailed analysis of how vinylene carbonate (VC) influences SEI layer formation. The integration of VC into the electrolyte markedly improved SEI properties. Moreover, correlation analysis revealed a connection between electrolyte decomposition and battery degradation, linked to the EMC esterification and dicarboxylate formation processes. VC facilitated the formation of a more uniform and chemically stable SEI layer enriched with poly(VC), thereby enhancing mechanical resilience and electrochemical stability. These findings deepen our understanding of the role of electrolyte additives in SEI formation, offering a promising strategy to improve the efficiency and lifespan of LIBs.

키워드 Lithium-ion battery; Solid electrolyte interface layer; Electrolyte decomposition; Vinylene carbonate