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Vacancy-Suppressed Garnet Electrolytes for Durable Solid-State Batteries
- Hong, Seokjae;
- Shin, Kwang Ho;
- Kim, Kyoung Sun;
- Kim, Jinhwan;
- Lee, Jaegi;
- ... Yu, Seung-Ho;
- 외 15명
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0초록
Cubic-garnet-type solid electrolytes (SEs) are promising candidates for all-solid-state batteries (ASSBs) due to their high ionic conductivity and stability against lithium metal. However, intrinsic lithium and oxygen vacancies formed during high-temperature sintering can lead to interfacial metal reduction and phase transitions, ultimately causing short circuits. In this study, we quantified these intrinsic vacancies in Li6.5La3Zr1.5Ta0.5O12 (LLZTO) and proposed a strategy to achieve vacancy-suppressed, lithium-stuffed garnet SEs by simply tuning the lithium content in both the green pellet and bedding powder during sintering. The optimized Li-stuffed LLZTO exhibited lithium occupancy exceeding 6.5 per formula unit (pfu) and oxygen-vacancy concentrations below 0.02 pfu, resulting in improved chemical stability at the electrolyte-electrode interface and enhanced air stability. The garnet electrolyte demonstrated a critical current density of 1.00 mA cm(-2) at 30 degrees C and 1.75 mA cm(-2) at 60 degrees C, along with stable cycling performance over 3000 h in lithium symmetric cells and 2000 cycles in hybrid full-cells, demonstrating 90% capacity retention. These findings highlight the pivotal role of intrinsic vacancy control in enhancing the structural and electrochemical integrity of garnet electrolytes, thereby promoting their practical application in ASSBs.
키워드
- 제목
- Vacancy-Suppressed Garnet Electrolytes for Durable Solid-State Batteries
- 저자
- Hong, Seokjae; Shin, Kwang Ho; Kim, Kyoung Sun; Kim, Jinhwan; Lee, Jaegi; Park, Byung-Gun; Hong, Won G.; Kwak, In Hye; Shim, Kyubin; Yu, Young-Sang; Kim, Ju Young; Jung, Young Hwa; Pin, Min Wook; Lee, Hyeon-Jong; Kim, Hojoon; Seo, Dong-Hwa; Shin, Hosun; Lee, Dongju; Yu, Seung-Ho; Jung, Sung-Kyun; Kim, Hyungsub
- 발행일
- 2026-04
- 유형
- Article
- 저널명
- Advanced Science
- 권
- 13
- 호
- 21