1 |
Sodium-driven Rechargeable Batteries: An Effort towards Future Energy Storage Komaba S Chemistry Letters, 49(12), 1507, 2020 |
2 |
Cobalt-doped layered lithium nickel oxide as a three-in-one electrode for lithium-ion and sodium-ion batteries and supercapacitor applications Karuppiah D, Palanisamy R, Ponnaiah A, Rengapillai S, Marimuthu S International Journal of Energy Research, 44(9), 7591, 2020 |
3 |
Sc-substituted Nasicon solid electrolyte for an all-solid-state NaxCoO2/ Nasicon/Na sodium model battery with stable electrochemical performance Kehne P, Guhl C, Ma Q, Tietz F, Alff L, Hausbrand R, Komissinskiy P Journal of Power Sources, 409, 86, 2019 |
4 |
Comparative study of fluoroethylene carbonate and succinic anhydride as electrolyte additive for hard carbon anodes of Na-ion batteries Kim DH, Kang B, Lee H Journal of Power Sources, 423, 137, 2019 |
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Preparation of Sodium Ion Conductive Na10GeP2S12 Glass-ceramic Electrolytes Tsuji F, Tanibata N, Sakuda A, Hayashi A, Tatsumisago M Chemistry Letters, 47(1), 13, 2018 |
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Preparation of Sodium Ion Conductive Na10GeP2S12 Glass-ceramic Electrolytes Tsuji F, Tanibata N, Sakuda A, Hayashi A, Tatsumisago M Chemistry Letters, 47(1), 13, 2018 |
7 |
The effect of cation chemistry on physicochemical behaviour of superconcentrated NaFSI based ionic liquid electrolytes and the implications for Na battery performance Hilder M, Howlett PC, Saurel D, Gonzalo E, Basile A, Armand M, Rojo T, Kar M, MacFarlane DR, Forsyth M Electrochimica Acta, 268, 94, 2018 |
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Sn-Fe-5(PO4)(4)(OH)(3)center dot 2H(2)O/graphene: A new electrode for superior rate applications in Li/Na ion batteries Mani V, Babu GNS, Kalaiselvi N Journal of Power Sources, 395, 31, 2018 |
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Solid-state Redox Reaction of Oxide Ions for Rechargeable Batteries Yabuuchi N Chemistry Letters, 46(4), 412, 2017 |
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Characteristics of glyme electrolytes for sodium battery: nuclear magnetic resonance and electrochemical study Carbone L, Munoz S, Gobet M, Devany M, Greenbaum S, Hassoun J Electrochimica Acta, 231, 223, 2017 |