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  5. Electronic Spin Transition in Nanosize Stoichiometric Lithium Cobalt Oxide

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Article
en
2012

Electronic Spin Transition in Nanosize Stoichiometric Lithium Cobalt Oxide

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en
2012
Vol 134 (14)
Vol. 134
DOI: 10.1021/ja300868e

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Gerbrand Ceder
Gerbrand Ceder

University of California, Berkeley

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Danna Qian
Yoyo Hinuma
Hailong Chen
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Abstract

A change in the electronic spin state of the surfaces relevant to Li (de)intercalation of nanosized stoichiometric lithium cobalt oxide LiCo(III)O(2) from low-spin to intermediate and high spin is observed for the first time. These surfaces are the ones that are relevant for Li (de)intercalation. From density functional theory calculations with a Hubbard U correction, the surface energies of the layered lithium cobalt oxide can be significantly lowered as a consequence of the spin change. The crystal field splitting of Co d orbitals is modified at the surface due to missing Co-O bonds. The electronic spin transition also has a significant impact on Co(III)-Co(IV) redox potential, as revealed by the change in the lithium (de)intercalation voltage profile in a lithium half cell.

How to cite this publication

Danna Qian, Yoyo Hinuma, Hailong Chen, Lin‐Shu Du, Kyler J. Carroll, Gerbrand Ceder, Clare P. Grey, Ying Shirley Meng (2012). Electronic Spin Transition in Nanosize Stoichiometric Lithium Cobalt Oxide. , 134(14), DOI: https://doi.org/10.1021/ja300868e.

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Publication Details

Type

Article

Year

2012

Authors

8

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1021/ja300868e

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