Back to Search Start Over

Kinetics of Interfacial Lithium-ion Transfer between a Graphite Negative Electrode and a Li2S-P2S5 Glassy Solid Electrolyte

Authors :
Danni YU
Meiqi HUANG
Yuto MIYAHARA
Kohei MIYAZAKI
Akitoshi HAYASHI
Masahiro TATSUMISAGO
Takeshi ABE
Tomokazu FUKUTSUKA
Source :
Electrochemistry, Vol 90, Iss 3, Pp 037003-037003 (2022)
Publication Year :
2022
Publisher :
The Electrochemical Society of Japan, 2022.

Abstract

All-solid-state lithium-ion batteries that use sulfide solid electrolytes have attracted much attention due to their high safety and wide electrochemical window. In this study, highly oriented pyrolytic graphite (HOPG) and 75Li2S-25P2S5 (mol%) glass were used as a model graphite negative electrode and a sulfide solid electrolyte, respectively. Interfacial lithium-ion transfer between 75Li2S-25P2S5 glass and the HOPG electrode was studied by AC impedance spectroscopy measurements. The activation energy of the interfacial lithium-ion transfer was estimated to be around 37 kJ mol−1, which was much smaller than that at the interface between organic liquid electrolytes and HOPG electrode, indicating that the lithium-ion transfer at the interface between 75Li2S-25P2S5 glass and HOPG electrode proceeded quite rapidly. Furthermore, surface deposition of TiO2 and surface oxidation on HOPG electrodes were performed using the atomic layer deposition (ALD) method. Interfacial lithium-ion transfer between 75Li2S-25P2S5 glass and ALD-modified-HOPG electrodes was also investigated. The activation energies of the interfacial lithium-ion transfer were slightly higher than that of HOPG, but the resistance of the charge-transfer process was lower, indicating that the affinity of the HOPG electrode for the glass electrolyte was improved by surface modification.

Details

Language :
English
ISSN :
21862451
Volume :
90
Issue :
3
Database :
Directory of Open Access Journals
Journal :
Electrochemistry
Publication Type :
Academic Journal
Accession number :
edsdoj.06ef64971494c7b9033f3d8eab6181c
Document Type :
article
Full Text :
https://doi.org/10.5796/electrochemistry.21-00127