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References
87
[3]
Oxygen Release and Its Effect on the Cycling Stability of LiNixMnyCozO2(NMC) Cathode Materials for Li-Ion Batteries

Roland Jung, Michael Metzger, Filippo Maglia et al.

Journal of The Electrochemical Society 10.1149/2.0021707jes
[8]
Singlet oxygen evolution from layered transition metal oxide cathode materials and its implications for lithium-ion batteries

Johannes Wandt, Anna T.S. Freiberg, Alexander Ogrodnik et al.

Materials Today 10.1016/j.mattod.2018.03.037
[10]
30 Years of Lithium‐Ion Batteries

Matthew Li, Jun Lu, Zhongwei Chen et al.

Advanced Materials 10.1002/adma.201800561

Showing 50 of 87 references

Cited By
388
ACS Electrochemistry
Journal of Chemical Theory and Comp...
Green Chem.
Oxygen hole formation controls stability in LiNiO2 cathodes

Annalena R. Genreith-Schriever, Hrishit Banerjee · 2023

Joule
Metrics
388
Citations
87
References
Details
Published
Jul 22, 2020
Vol/Issue
142(35)
Pages
15058-15074
License
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Funding
H2020 European Research Council Award: 835073
Engineering and Physical Sciences Research Council Award: EP/M009521/1 DJR00640
Faraday Institution Award: FIRG001
U.S. Department of Energy Award: DE-SC0012583 (68799)
Cite This Article
Bernardine L. D. Rinkel, David S. Hall, Israel Temprano, et al. (2020). Electrolyte Oxidation Pathways in Lithium-Ion Batteries. Journal of the American Chemical Society, 142(35), 15058-15074. https://doi.org/10.1021/jacs.0c06363
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