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  5. The Impact of Surface Structure Transformations on the Performance of Li-Excess Cation-Disordered Rocksalt Cathodes

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Article
en
2020

The Impact of Surface Structure Transformations on the Performance of Li-Excess Cation-Disordered Rocksalt Cathodes

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0 Files

en
2020
Vol 1 (9)
Vol. 1
DOI: 10.1016/j.xcrp.2020.100187

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Gerbrand Ceder
Gerbrand Ceder

University of California, Berkeley

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Deok‐Hwang Kwon
Jinhyuk Lee
Nongnuch Artrith
+6 more

Abstract

Li-excess cation-disordered rocksalt (DRX) oxides have shown potential as high-energy-density Li-ion cathodes. They typically exploit O redox to achieve high capacity, which can trigger oxygen loss at the surface, thereby affecting the cathode performance. Here, we elucidate the impact that the surface structural evolution has on their electrochemical properties by comparing two prototypical DRX cathodes, Li1.2Ni0.333Ti0.333Mo0.133O2 (LNTMO) and Li1.2Mn0.6Nb0.2O2 (LMNO). Both cathodes achieve high capacity, but oxygen loss leads to significant polarization for LNTMO, whereas LMNO is far less affected. We show that while metal densification at the particle surface occurs for both materials, the resulting surface structure is strikingly different. A spinel phase forms at the surface of LMNO, which effectively alleviates oxygen loss and allows fast Li transport, whereas a densified DRX forms at the LNTMO surface, which impedes Li transport and cannot mitigate oxygen loss. These findings demonstrate the importance of the surface structure of DRX cathode.

How to cite this publication

Deok‐Hwang Kwon, Jinhyuk Lee, Nongnuch Artrith, Hyunchul Kim, Lijun Wu, Zhengyan Lun, Yaosen Tian, Yimei Zhu, Gerbrand Ceder (2020). The Impact of Surface Structure Transformations on the Performance of Li-Excess Cation-Disordered Rocksalt Cathodes. , 1(9), DOI: https://doi.org/10.1016/j.xcrp.2020.100187.

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Publication Details

Type

Article

Year

2020

Authors

9

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1016/j.xcrp.2020.100187

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