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Unveiling crystal orientation-dependent interface property in composite cathodes for solid-state batteries by in situ microscopic probe

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Title
Unveiling crystal orientation-dependent interface property in composite cathodes for solid-state batteries by in situ microscopic probe
Author(s)
Lee, Sunyoung; Hayoung Park; Kim, Jae Young; Jihoon Kim; Choi, Min-Ju; Han, Sangwook; Kim, Sewon; Kim, Wonju; Jang, Ho Won; Jungwon Park; Kisuk Kang
Publication Date
2024-09
Journal
Nature Communications, v.15, no.1
Publisher
Nature Publishing Group
Abstract
A critical bottleneck toward all-solid-state batteries lies in how the solid(electrode)-solid(electrolyte) interface is fabricated and maintained over repeated cycles. Conventional composite cathodes, with crystallographically distinct electrode/electrolyte interfaces of random particles, create complexities with varying (electro)chemical compatibilities. To address this, we employ an epitaxial model system where the crystal orientations of cathode and solid electrolyte are precisely controlled, and probe the interfaces in real-time during co-sintering by in situ electron microscopy. The interfacial reaction is highly dependent on crystal orientation/alignment, especially the availability of open ion channels. Interfaces bearing open ion paths of NCM are more susceptible to interdiffusion, but stabilize with the early formed passivation layer. Conversely, interfaces with closed ion pathway exhibit stability at intermediate temperatures, but deteriorate rapidly at high temperature due to oxygen evolution, increasing interfacial resistance. The elucidation of these distinct interfacial behaviors emphasizes the need for decoupling collective interfacial properties to enable rational design in solid-state batteries. © The Author(s) 2024.
URI
https://pr.ibs.re.kr/handle/8788114/15663
DOI
10.1038/s41467-024-52226-4
Appears in Collections:
Center for Nanoparticle Research(나노입자 연구단) > 1. Journal Papers (저널논문)
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