상세 보기
- Sadan, Milan K.;
- Song, Eunji;
- Yu, Hooam;
- Yun, Jimin;
- Kim, Taehong;
- ... Cho, Kwon-Koo;
- ... Ahn, Hyo-Jun;
- 외 1명
WEB OF SCIENCE
14SCOPUS
14초록
This study investigates the potential of micron-sized Bi as an alloy-type anode material for lithium-ion batteries (LIBs). Compared to the limited capacity of conventional anode materials, Bi offers a high theoretical volumetric capacity of 3800 mA h cm(-3). We utilized commercial micron-sized Bi powder and a conventional method to prepare Bi electrodes. Remarkably, the Bi anode exhibited excellent cycling stability with a capacity retention of 94% after 1000 cycles when using a tetrahydrofuran (THF)-based electrolyte. During charge/discharge cycling, the Bi particles initially underwent pulverization but subsequently formed a porous structure through room-temperature sintering, showcasing a self-healing phenomenon. Importantly, the pulverization of the alloy-type anode did not contribute significantly to degradation during cycling. This study presents the first evidence of self-healing from pulverization in alloy-type anodes for LIBs. We successfully fabricated a full cell by combining the Bi anode with a lithium iron phosphate (LFP; Li4FePO4) cathode. Notably, the results demonstrate the promise of micron-sized Bi without surface coating or nanostructuring as an anode material for LIBs. Additionally, the self-healing concept explored here holds potential for application to other alloy-type anodes in LIBs, providing an avenue for further advancements in next-generation battery systems.
키워드
- 제목
- Extended cycling performance of micron-sized bismuth anodes for lithium-ion batteries: self-healing of an alloy-type anode for lithium batteries
- 저자
- Sadan, Milan K.; Song, Eunji; Yu, Hooam; Yun, Jimin; Kim, Taehong; Ahn, Jou-Hyeon; Cho, Kwon-Koo; Ahn, Hyo-Jun
- 발행일
- 2023-07
- 유형
- Article
- 권
- 11
- 호
- 28
- 페이지
- 15466 ~ 15474