Boron-doped sodium layered oxide for reversible oxygen redox reaction in Na-ion battery cathodes
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DOI: 10.1038/s41467-021-25610-7
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Cited by:
- Congcong Cai & Xinyuan Li & Jiantao Li & Ruohan Yu & Ping Hu & Ting Zhu & Tianyi Li & Sungsik Lee & Nuo Xu & Hao Fan & Jinsong Wu & Liang Zhou & Liqiang Mai & Khalil Amine, 2025. "Transition metal vacancy and position engineering enables reversible anionic redox reaction for sodium storage," Nature Communications, Nature, vol. 16(1), pages 1-12, December.
- Gupta, Yamini & Siwatch, Poonam & Karwasra, Reetika & Sharma, Kriti & Tripathi, S.K., 2024. "Recent progress of layered structured P2- and O3- type transition metal oxides as cathode material for sodium-ion batteries," Renewable and Sustainable Energy Reviews, Elsevier, vol. 192(C).
- Xinghui Liang & Xiaosheng Song & H. Hohyun Sun & Hun Kim & Myoung-Chan Kim & Yang-Kook Sun, 2025. "High-energy and long-life O3-type layered cathode material for sodium-ion batteries," Nature Communications, Nature, vol. 16(1), pages 1-15, December.
- Haoji Wang & Tongchao Liu & Hongyi Chen & Yu Mei & Jinqiang Gao & Lianshan Ni & Ningyun Hong & Jiangnan Huang & Xinyu Hu & Wentao Deng & Guoqiang Zou & Hongshuai Hou & Debbie S. Silvester & Craig E. B, 2025. "Multicationic interactions mitigating lattice strain in sodium layered cathodes," Nature Communications, Nature, vol. 16(1), pages 1-13, December.
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