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Department of Energy Science and Engineering
Battery Materials Discovery Laboratory
1. Journal Articles
Li21Ge8P3S34: New Lithium Superionic Conductor with Unprecedented Structural Type
Roh, Jihun
;
Gholam, Saleh
;
Do, Namgyu
;
Manjon-Sanz, Alicia
;
Hadermann, Joke
;
Hong, Seung-Tae
Department of Energy Science and Engineering
Battery Materials Discovery Laboratory
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Title
Li21Ge8P3S34: New Lithium Superionic Conductor with Unprecedented Structural Type
Issued Date
2025-05
Citation
Angewandte Chemie International Edition, v.64, no.22
Type
Article
Author Keywords
All-solid-state batteries
;
Conducting materials •Inorganic chemistry
;
Solid-state structures
;
Thio-LISICONs
Keywords
X-RAY-DIFFRACTION
;
CRYSTAL-STRUCTURE
;
PERCHLORATE ANHYDRATE
;
IONIC-CONDUCTIVITY
;
ELECTROLYTE
;
PERFORMANCE
;
DIFFUSION
ISSN
1433-7851
Abstract
Lithium superionic conductors are pivotal for enabling all-solid-state batteries, which aim to replace liquid electrolytes and enhance safety. Herein, we report the discovery of an unprecedented lithium superionic conductor, Li21Ge8P3S34, featuring a novel structural type and a new composition in the Li–Ge–P–S system. This material exhibits high lithium ionic conductivity of approximately 1.0 mS cm−1 at 303 K with a low activation energy of 0.20(1) eV. It's unique crystal structure was elucidated using three-dimensional electron diffraction (3D ED) and further refined through combined powder X-ray and neutron diffraction analyses. The structure consists of alternating two-dimensional slabs: one of corner-sharing GeS4 tetrahedra and the other of isolated PS4 tetrahedra, enabling efficient lithium-ion transport through a tetrahedrally interconnected network of 1D, 2D, and 3D diffusion pathways. This distinctive structural motif provides a novel design strategy for next-generation solid electrolytes, broadening the structural landscape of lithium superionic conductors. With further advancements in compositional tuning and interfacial engineering, Li21Ge8P3S34 could contribute to the development of high-performance all-solid-state batteries. © 2025 The Author(s). Angewandte Chemie International Edition published by Wiley-VCH GmbH.
URI
https://scholar.dgist.ac.kr/handle/20.500.11750/58516
DOI
10.1002/anie.202500732
Publisher
Wiley
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