Interphase Modified Ternary Composite Solid Electrolyte Based on Ionic Liquid-LLZTO for Printable All Solid-State Battery

  • Seo, Harim; 
  • Lee, Jemin; 
  • Yun, Yeji; 
  • Yin, Zhenxing; 
  • Yoo, Jeeyoung
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초록

Although research on the ceramic-polymer interface has been conducted in the field of composite solid electrolytes (CSEs), its principles have not been clearly identified. In this work, the Li ion conduction mechanism at a level where the ionic conductivity of the matrix is similar to that of the filler is studied. In addition, the oxygen vacancies (O-v) on the filler surface are filled through the ultraviolet ozone (UVO) process to confirm the difference in ion conduction because of the difference in interphase. When the O-v concentration is reduced, the ionic conductivity of the electrolyte increases compared to the existing electrolyte. Differences in resistance by electrolyte are identified through DRT analysis using a stainless steel (SS) symmetric cell. The surface-controlled electrolyte has a uniform ion flow, resulting in the formation of a stable solid electrolyte interphase (SEI) layer. Therefore, the electrolyte having a lower O-v on the filler surface shows better electrochemical performance, maintaining 92.47% of capacity at the 300th cycle.

키워드

interphase ion conduction; electrolyte filler; ionic liquid; solid electrolyte; Li ion battery; POLYMER ELECTROLYTE; LITHIUM; FILLER; STABILITY; OXIDE; TFSI; GEL
제목
Interphase Modified Ternary Composite Solid Electrolyte Based on Ionic Liquid-LLZTO for Printable All Solid-State Battery
저자
Seo, Harim; Lee, Jemin; Yun, Yeji; Yin, Zhenxing; Yoo, Jeeyoung
DOI
10.1021/acsaem.4c02635
발행일
2025-01-14
유형
Article
저널명
ACS APPLIED ENERGY MATERIALS
권
8
호
2
페이지
1089 ~ 1100