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Electrolyte additive induced fast-charge/slow-discharge process: Potassium ferricyanide and potassium persulfate for CoO-based supercapacitors Han XX, Jiang T, Chen X, Jiang DM, Xie K, Jiang YH, Wang YQ Journal of Colloid and Interface Science, 576, 505, 2020 |
2 |
Dual electrolyte additives of potassium hexafluorophosphate and tris (trimethylsilyl) phosphite for anode-free lithium metal batteries Hagos TM, Berhe GB, Hagos TT, Bezabh HK, Abrha LH, Beyene TT, Huang CJ, Yang YW, Su WN, Dai HJ, Hwang BJ Electrochimica Acta, 316, 52, 2019 |
3 |
Tris (2-(thiophen-2-yl) ethyl) phosphate to synergistically enhance electronic and ionic conductivities of cathode electrolyte interphase in high-voltage lithium ion batteries Liang X, Huang J, Zheng Y, Shi PC, Sun Y, Xiang HF Electrochimica Acta, 316, 228, 2019 |
4 |
P2-Type Na0.67Mn0.8Cu0.1Mg0.1O2 as a new cathode material for sodium ion batteries: Insights of the synergetic effects of multi-metal substitution and electrolyte optimization Li JK, Wang J, He X, Zhang L, Senyshyn A, Yan B, Muehlbauer M, Cao X, Vortmann-Westhoven B, Kraft V, Liu HD, Luerenbaum C, Schumacher G, Paillard E, Winter M, Li J Journal of Power Sources, 416, 184, 2019 |
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Antimony-carbon nanocomposites for potassium-ion batteries: Insight into the failure mechanism in electrodes and possible avenues to improve cyclic stability Sultana I, Rahman MM, Liu JN, Sharma N, Ellis AV, Chen Y, Glushenkov AM Journal of Power Sources, 413, 476, 2019 |
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Modified alkaline electrolyte with 8-hydroxyquinoline and ZnO complex additives to improve Al-air battery Zhu C, Yang HX, Wu AQ, Zhang DQ, Gao LX, Lin T Journal of Power Sources, 432, 55, 2019 |
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수계 유기 레독스 흐름 전지 성능에서의 첨가제 효과 추천호, 이원미, 권용재 Korean Chemical Engineering Research, 57(6), 847, 2019 |
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Lithium ion batteries (NMC/graphite) cycling at 80 degrees C: Different electrolytes and related degradation mechanism Genieser R, Ferrari S, Loveridge M, Beattie SD, Beanland R, Amari H, West G, Bhagat R Journal of Power Sources, 373, 172, 2018 |
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Toward a stable solid-electrolyte-interfaces on nickel-rich cathodes: LiPO2F2 salt-type additive and its working mechanism for LiNi0.5Mn0.25Co0.25O2 cathodes Zhao WM, Zheng GR, Lin M, Zhao WG, Li DJ, Guan XY, Ji YJ, Ortiz GF, Yang Y Journal of Power Sources, 380, 149, 2018 |
10 |
Systematic Investigation of Alkali Metal Ions as Additives for Graphite Anode in Propylene Carbonate Based Electrolytes Chandrasiri KWDK, Nguyen CC, Zhang YZ, Parimalam BS, Lucht BL Electrochimica Acta, 250, 285, 2017 |