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Towards rational design of high performance Ni-rich layered oxide cathodes: The interplay of borate-doping and excess lithium Zhang CX, Xu S, Han B, Lin GX, Huang Q, Ivey DG, Yang C, Wang P, Wei WF Journal of Power Sources, 431, 40, 2019 |
2 |
Surface diffusion and coverage effect of Li atom on graphene as studied by several density functional theory methods Ji Z, Contreras-Torres FF, Jalbout AF, Ramirez-Trevino A Applied Surface Science, 285, 846, 2013 |
3 |
Li+ adsorption at prismatic graphite surfaces enhances interlayer cohesion Pastewka L, Maiola S, Moseler M, Koskinen P Journal of Power Sources, 239, 321, 2013 |
4 |
Characterization of the lithium surface by infrared and Raman spectroscopies Naudin C, Bruneel JL, Chami A, Desbat B, Grondin J, Lassegues JC, Servant L Journal of Power Sources, 124(2), 518, 2003 |
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Mechanism of lithium electrosorption by activated carbons Alfarra A, Frackowiak E, Beguin F Electrochimica Acta, 47(10), 1545, 2002 |
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Impedance Spectroscopy as a Technique for Studying the Spontaneous Passivation of Metals in Electrolytes Gaberscek M, Pejovnik S Electrochimica Acta, 41(7-8), 1137, 1996 |
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Electrochemical-Behavior of Li-Sn, Li-Cd and Li-Sn-Cd Alloys in Propylene Carbonate Solution Nimon ES, Churikov AV Electrochimica Acta, 41(9), 1455, 1996 |
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Electrochemical Oxidation Processes on Ni Electrodes in Propylene Carbonate Containing Various Electrolyte Salts Kanamura K, Toriyama S, Shiraishi S, Takehara Z Journal of the Electrochemical Society, 143(8), 2548, 1996 |