Divalent anion-driven framework regulation in Zr-based halide solid electrolytes for all-solid-state batteries

  • Kim, Jae-Seung
  • Han, Daseul
  • Choe, Jinyeong
  • Kim, Youngkyung
  • Kim, Hae-Yong
  • ... Nam, Kyung-Wan
  • 외 11명
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초록

Research into solid electrolytes for all-solid-state batteries has intensified due to demand for safer and higher-energy-density batteries. Halide solid electrolytes are valued for their high ionic conductivity, oxidative stability, and ductility. Among them, Li<inf>2</inf>ZrCl<inf>6</inf> is cost-effective but has a relatively lower Li⁺ ionic conductivity (0.4 mS cm−1 at 25 °C) compared to other halides, such as Li<inf>3</inf>InCl<inf>6</inf> (> 1 mS cm−1 at 25 °C). Here, we elucidate a fundamental mechanism of divalent-anion-driven framework modification that enables enhanced ionic conduction in Zr-based halides. Specifically, we demonstrate enhanced Li+ conductivities for oxygen- (0.8Li<inf>2</inf>O–ZrCl<inf>4</inf>: 1.78 mS cm−1 at 25 °C) and sulfur- (0.8Li<inf>2</inf>S–ZrCl<inf>4</inf>: 1.01 mS cm−1 at 25 °C) substituted lattices. Synchrotron-based X-ray analyses identify distinct anionic sublattices and first-principles calculations reveal that divalent anions locally cluster within the lattice, inducing structural distortion and Li-site destabilization. These changes widen lithium conduction channels and alter the bonding environment, weakening and diversifying Li–Cl interactions. As a result, the energy landscape for lithium migration is flattened, leading to improved ionic conduction. These findings highlight design strategies for divalent-anion-driven framework regulation in halide solid electrolytes. © The Author(s) 2025.

키워드

CONDUCTORSINTERFACECATHODESSULFIDE
제목
Divalent anion-driven framework regulation in Zr-based halide solid electrolytes for all-solid-state batteries
저자
Kim, Jae-SeungHan, DaseulChoe, JinyeongKim, YoungkyungKim, Hae-YongLee, SoeulSeo, JiwonHam, Seung-HuiSong, You-YeobLee, Chang-DaeLee, JuhoKwak, HiramKim, JinsooJung, Yoon-SeokJung, Sung-KyunNam, Kyung-WanSeo, Dong-Hwa
DOI
10.1038/s41467-025-65702-2
발행일
2025-11
유형
Article
저널명
Nature Communications
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