Manipulation of Na3V2(PO4)2F3 via aluminum doping to alter local electron states toward an advanced cathode for sodium-ion batteries
Author:
Funder
National Natural Science Foundation of China
Natural Science Foundation of Yunnan Province
Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s12598-024-02777-8.pdf
Reference48 articles.
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2. Zhu L, Zhang Q, Sun D, Wang Q, Weng NN, Tang YG, Wang HY. Engineering the crystal orientation of Na3V2(PO4)2F3@rGO microcuboids for advanced sodium-ion batteries. Mater Chem Front. 2020;4(10):2932. https://doi.org/10.1039/D0QM00364F.
3. Chen JX, Su ZL, Zhao T, Pu GG, Li A, Wang L. Performance of cathode material of high-power lithium-ion battery. Chin J Rare Met. 2023;47(12):1756. https://doi.org/10.13373/j.cnki.cjrm.XY21010027.
4. Wang H, Liu F, Yu RH, Wu JS. Unraveling the reaction mechanisms of electrode materials for sodium-ion and potassium-ion batteries by in situ transmission electron microscopy. Interdiscip Mater. 2022;1(2):196. https://doi.org/10.1002/idm2.12008.
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1. Fluorinated ionic liquid mediated nanostructure with enhanced conductivity and fluorine retention in Na3V2(PO4)2F3 cathode toward high-performance sodium-ion batteries;Chemical Engineering Journal;2024-10
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