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Insight into cations substitution on structural and electrochemical properties of nanostructured Li2FeSiO4/C cathodes Sivaraj P, Abhilash KP, Nalini B, Selvin PC, Goel S, Yadav SK Journal of the American Ceramic Society, 103(3), 1685, 2020 |
2 |
Hydrothermal crystallization of Pmn2(1) Li2FeSiO4 hollow mesocrystals for Li-ion cathode application Zeng Y, Chiu HC, Rasool M, Brodusch N, Gauvin R, Jiang DT, Ryan DH, Zaghib K, Demopoulos GP Chemical Engineering Journal, 359, 1592, 2019 |
3 |
Tri-phase (1-x-y) Li2FeSiO4 center dot xLiFeBO(3)center dot yLiFePO(4) nested nanostructure with enhanced Li-storage properties Tian MY, Hu L, Huang Z, Li MR, Yang JL, Wang Z, Li JN, Lin X, Mu SC Chemical Engineering Journal, 358, 786, 2019 |
4 |
Rationally fabricating nitrogen-doped carbon coated nanocrystalline Li2FeSiO4@N-C with excellent Li-ion battery performances Gao HY, Wu QQ, Guo M, Yang SW, Zhao YN, Kwon YU Electrochimica Acta, 318, 720, 2019 |
5 |
The effect of Ni or Pb substitution on the electrochemical performance of Li2FeSiO4/C cathode materials Li L, Han ES, Mi C, Zhu LZ, Dou LJ, Shi YK Solid State Ionics, 330, 24, 2019 |
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Hydrothermal preparation and intrinsic transport properties of nanoscale Li2FeSiO4 Liu L, Wang PF, Li JJ, Shi GY, Ma L, Zhao J, An HL Solid State Ionics, 320, 353, 2018 |
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Enhanced Electrochemical performance of Li2FeSiO4/C as cathode for lithium-ion batteries via metal doping at Fe-site Li L, Han ES, Dou LJ, Zhu LZ, Mi C, Li M, Niu JH Solid State Ionics, 325, 30, 2018 |
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Novel insights into higher capacity from the Li-ion battery cathode material Li2FeSiO4 Liivat A, Thomas J, Guo JH, Yang Y Electrochimica Acta, 223, 109, 2017 |
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Synthesis of high-performance Li2FeSiO4/C composite powder by spray-freezing/freeze-drying a solution with two carbon sources Fujita Y, Iwase H, Shida K, Liao JS, Fukui T, Matsuda M Journal of Power Sources, 361, 115, 2017 |
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Flame-made Lithium Transition Metal Orthosilicates Wagner N, Svensson AM, Vullum-Bruer F Electrochimica Acta, 203, 246, 2016 |