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  5. The Limited Incorporation and Role of Fluorine in Mn-rich Disordered Rocksalt Cathodes

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Article
en
2024

The Limited Incorporation and Role of Fluorine in Mn-rich Disordered Rocksalt Cathodes

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en
2024
Vol 9 (6)
Vol. 9
DOI: 10.1021/acsenergylett.4c01075

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Gerbrand Ceder
Gerbrand Ceder

University of California, Berkeley

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Vincent C. Wu
Peichen Zhong
Julia Ong
+4 more

Abstract

Disordered rocksalt oxide (DRX) cathodes are promising candidates for next-generation Co- and Ni-free Li-ion batteries. While fluorine substitution for oxygen has been explored as an avenue to enhance their performance, the amount of fluorine incorporated into the DRX structure is particularly challenging to quantify and impedes our ability to relate fluorination to electrochemical performance. Herein, an experimental-computational method combining 7Li and 19F solid-state nuclear magnetic resonance, and ab initio cluster expansion Monte Carlo simulations, is developed to determine the composition of DRX oxyfluorides. Using this method, the synthesis of Mn- and Ti-containing DRX via standard high temperature sintering and microwave heating is optimized. Further, the upper fluorination limit attainable using each of these two synthesis routes is established for various Mn-rich DRX compounds. A comparison of their electrochemical performance reveals that the capacity and capacity retention mostly depend on the Mn content, while fluorination plays a secondary role.

How to cite this publication

Vincent C. Wu, Peichen Zhong, Julia Ong, Eric Yoshida, Andrew H. Kwon, Gerbrand Ceder, Raphaële J. Clément (2024). The Limited Incorporation and Role of Fluorine in Mn-rich Disordered Rocksalt Cathodes. , 9(6), DOI: https://doi.org/10.1021/acsenergylett.4c01075.

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Publication Details

Type

Article

Year

2024

Authors

7

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1021/acsenergylett.4c01075

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