Role of oxygen holes in Li(x)CoO(2) revealed by soft X-ray spectroscopy

The fundamental electronic structure of the widely used battery material Li(x)CoO(2) still remains a mystery. Soft x-ray absorption spectroscopy of Li(x)CoO(2) reveals that holes with strong O 2p character play an essential role in the electronic conductivity of the Co(3+)/Co(4+) mixed valence CoO(2...

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Veröffentlicht in:Physical review letters 2013-08, Vol.111 (5), p.056404-056404
Hauptverfasser: Mizokawa, T, Wakisaka, Y, Sudayama, T, Iwai, C, Miyoshi, K, Takeuchi, J, Wadati, H, Hawthorn, D G, Regier, T Z, Sawatzky, G A
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Sprache:eng
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Zusammenfassung:The fundamental electronic structure of the widely used battery material Li(x)CoO(2) still remains a mystery. Soft x-ray absorption spectroscopy of Li(x)CoO(2) reveals that holes with strong O 2p character play an essential role in the electronic conductivity of the Co(3+)/Co(4+) mixed valence CoO(2) layer. The oxygen holes are bound to the Co(4+) sites and the Li-ion vacancy, suggesting that the Li-ion flow can be stabilized by oxygen hole back flow. Such an oxygen hole state of Li(x)CoO(2) is unique among the various oxide-based battery materials and is one of the key ingredients to improving their electronic and Li-ion conductivities.
ISSN:1079-7114