MATERIALS TRANSACTIONS
Online ISSN : 1347-5320
Print ISSN : 1345-9678
ISSN-L : 1345-9678
Microstructure of Materials
Fabrication and Lithium Intercalation Properties of Graphite-Li10P3S12Br Anode Composites
Masaki ShishidoSatoshi TakahashiSatoshi HoriKenta WatanabeKota SuzukiRyoji KannoKotaro NakamuraTomohiro AbeHirotaka HanawaMasaaki Hirayama
Author information
JOURNAL OPEN ACCESS FULL-TEXT HTML

2025 Volume 66 Issue 11 Pages 1432-1439

Details
Abstract

A Li10GeP2S12-type lithium-ion conductor Li10P3S12Br was investigated as a potential solid electrolyte for composite anodes in all-solid-state lithium-ion batteries. Cyclic voltammetry measurements using an Au/Li10P3S12Br/Li cell revealed that Li10P3S12Br possesses a sufficiently wide electrochemical window, making it suitable for anode reactions at low potentials. Spherical graphite-Li10P3S12Br composite anodes, fabricated via rotary mixing, exhibited lithium (de)intercalation activity, demonstrating the feasibility of Li10P3S12Br as an electrolyte for all-solid-state battery anodes. Composite anodes with a higher proportion of Li10P3S12Br relative to graphite exhibited improved cycle retention of charge-discharge capacities. A composite comprising graphite (d50: 8 µm) and Li10P3S12Br (d50: 0.3 µm) in a 20:80 wt.% ratio achieved a discharge capacity of 365 mAh g−1 at the 30th cycle. In contrast, the 50:50 wt.% composite exhibited a notable decrease in lithium intercalation capacity in the stage 2 (LiC12) and stage 1 (LiC6) regions. These results suggest that reducing the lithium diffusion distance within graphite particles is crucial for enhancing the intercalation properties of graphite/Li10P3S12Br composite anodes.

 

This Paper was Originally Published in Japanese in J. Jpn. Soc. Powder Powder Metallurgy 72 (2025) 129–136.

Fullsize Image
Content from these authors
© 2025 Japan Society of Powder and Powder Metallurgy

This paper is open access and licensed under a CC-BY-NC-ND license. You are free to share or adapt the materials as long as you follow the license term: Attribution, NonCommercial, and NoDerivatives. To view a copy of this license, visit https://creativecommons.org/licenses/by-nc-nd/4.0/.
https://creativecommons.org/licenses/by-nc-nd/4.0/
Previous article Next article
feedback
Top