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◆ ACS Materials Letters2025-11-14· Materials science

Li <sub>2</sub> TaS <sub> 1– <i>x</i> </sub> O <sub> <i>x</i> </sub> Cl <sub>5</sub> : Triple-Anion Glassy Superionic Conductors for High-Performance Solid-State Batteries

Bright Ogbolu, Thilina N. D. D. Gamaralalage, Md. Mahinur Islam, Tehreem Toheed, Joseph Sariego, Tej P. Poudel, Brian E. Francisco, Yan‐Yan Hu

原始摘要(英文原文)· Original abstract
The development of stable, high-performance solid electrolytes is critical for advancing all-solid-state lithium batteries (ASSLBs). We report a series of triple-anion electrolytes, Li 2 TaS 1– x O x Cl 5 (0 ≤ x ≤ 0.9), synthesized via a rapid 2-hour mechanochemical process. The optimal composition, Li 2 TaS 0.4 O 0.6 Cl 5 (LTSOC), achieves a room-temperature ionic conductivity of ∼4.2 mS cm –1, over 15 times that of Li 2 TaSCl 5 . XRD confirms its amorphous nature, while 6/7 Li NMR reveals one magnetically equivalent lithium environment due to fast ion-exchange dynamics. Raman spectroscopy shows extensive anion mixing within Ta-centered octahedra, where O 2– and S 2– occupy axial positions, linking Ta–O–S–Cl units, while Li + primarily migrates along equatorial Cl – -lined pathways. Nanoindentation reveals a reduced elastic modulus with oxygen incorporation. When employed with commercial NMC811, LTSOC delivers an initial capacity of 187 mAh g –1 at 0.1C, with ∼81.8% retention after 100 cycles and Coulombic efficiency exceeding 99%. These results demonstrate the promise of amorphous, mixed-anion solid electrolytes for scalable, high-performance ASSLBs.
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Li <sub>2</sub> TaS <sub> 1– <i>x</i> </sub> O <sub> <i>x</i> </sub> Cl <sub>5</sub> : Triple-Anion Glassy Superionic Conductors for High-Performance Solid-State Batteries — 科研速览 Science Skim