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Charge/discharge mechanism of a new Co-doped Li 2 O cathode material for a rechargeable sealed lithium-peroxide battery analyzed by X-ray absorption spectroscopy

Authors :
Hiroaki Kobayashi
Daisuke Asakura
Naoka Nagamura
Yasutaka Sumida
Yuta Kitada
Masaharu Oshima
Shin Ichi Okuoka
Tetsuichi Kudo
Eiji Hosono
Koji Yonehara
Noritaka Mizuno
Itaru Honma
Yusuke Nanba
Mitsuhiro Hibino
Hironobu Ono
Yoshiyuki Ogasawara
Source :
Journal of Power Sources. 287:220-225
Publication Year :
2015
Publisher :
Elsevier BV, 2015.

Abstract

Soft X-ray absorption spectroscopic studies are carried out to clarify the charge/discharge reaction mechanism of Co-doped Li 2 O (CDL, Co/Li = 0.1 molar ratio) as a cathode material for a new rechargeable lithium-peroxide battery. Upon charging CDL in an aprotic electrolyte, a drastic change can be seen in the O K-edge spectra, with a new, strong peak assignable to σ*(O–O) of peroxide at photon energy of 531.0 eV. This peak is reduced during subsequent discharging, causing the spectrum to essentially return to that of pristine CDL recorded in total fluorescence yield mode. The Co L 2,3 -edge spectra do not show a remarkable change during charging, with the exception of the disappearance of a Co 2+ shoulder peak. The spectrum of charged CDL is in reasonable agreement with the calculated spectrum, assuming that the fraction of Co 3+ – L (where L indicates a hole state in the oxygen 2 p band) is dominant in the electronic configuration of the ground state. This suggests that, to a certain extent, a redox reaction involving a ligand hole state (Co 3+ – L ) participates in generation of the capacity.

Details

ISSN :
03787753
Volume :
287
Database :
OpenAIRE
Journal :
Journal of Power Sources
Accession number :
edsair.doi...........c5fc6f513bc2b29f90ab4e11a70e6081
Full Text :
https://doi.org/10.1016/j.jpowsour.2015.04.050