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Ultra-long cycle life and high rate performance subglobose Na3V2(PO4)(2)F-3@C cathode and its regulation Zhan WX, Fan CL, Zhang WH, Yi GD, Chen H, Han SC, Liu JS International Journal of Energy Research, 44(8), 6608, 2020 |
2 |
Facile synthesis of NaVPO4F/C cathode with enhanced interfacial conductivity towards long-cycle and high-rate sodium-ion batteries Ge XC, Li XH, Wang ZX, Guo HJ, Yan GC, Wu XW, Wang JX Chemical Engineering Journal, 357, 458, 2019 |
3 |
Novel synergistic 0.9LiMn(0.9)Fe(0.1)PO(4)center dot 0.1Na(3)V(2)(PO4)(2)F-3/C nano-hybrid cathode with enhanced electrochemical performance for lithium-ion batteries Zhang ZJ, Hu GR, Cao YB, Duan JG, Du K, Peng ZD Journal of Power Sources, 303, 29, 2016 |
4 |
Improving the electrochemical performance of lithium vanadium fluorophosphate cathode material: Focus on interfacial stability Wang JX, Liu ZM, Yan GC, Li HK, Peng WJ, Li XH, Song LB, Shih K Journal of Power Sources, 329, 553, 2016 |
5 |
A Family of High-Performance Cathode Materials for Na-ion Batteries, Na-3(VO1-xPO4)(2) F1+2x (0 <= x <= 1): Combined First-Principles and Experimental Study Park YU, Seo DH, Kim H, Kim J, Lee S, Kim B, Kang K Advanced Functional Materials, 24(29), 4603, 2014 |
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A novel lithium vanadium fluorophosphate nanosheet with uniform carbon coating as a cathode material for lithium-ion batteries Zhang B, Han YD, Zheng JC, Shen C, Ming L, Zhang JF Journal of Power Sources, 264, 123, 2014 |
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Synthesis and characterization of LiVPO4F/C using precursor obtained through a soft chemical route with mechanical activation assist Wang JX, Li XH, Wang ZX, Guo HJ, Zhang YH, Xiong XH, He ZJ Electrochimica Acta, 91, 75, 2013 |
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Electrochemical performance of mixed valence Na3V2O2x(PO4)(2)F3-2x/C as cathode for sodium-ion batteries Serras P, Palomares V, Goni A, Kubiak P, Rojo T Journal of Power Sources, 241, 56, 2013 |
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Novel synthesis of LiVPO4F cathode material by chemical lithiation and postannealing Zheng JC, Zhang B, Yang ZH Journal of Power Sources, 202, 380, 2012 |
10 |
Symmetric lithium-ion cell based on lithium vanadium fluorophosphate with ionic liquid electrolyte Plashnitsa LS, Kobayashi E, Okada S, Yamaki J Electrochimica Acta, 56(3), 1344, 2011 |