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Structural analysis during activation and cycling for Fe- and Ni-substituted Li2MnO3 positive electrode material Tabuchi M, Kitta M, Shibuya H, Doumae K, Yuge R, Narita K, Tamura N Electrochimica Acta, 303, 9, 2019 |
2 |
Two-step hydrothermal synthesis of NiCo2S4/Co9S8 nanorods on nickel foam for high energy density asymmetric supercapacitors Xu R, Lin JM, Wu JH, Huang ML, Fan LQ, Chen HW, He X, Wang YT, Xu ZD Applied Surface Science, 434, 861, 2018 |
3 |
Mesoscopic modeling and parameter estimation of a lithium-ion battery based on LiFePO4/graphite Jokar A, Desilets M, Lacroix M, Zaghib K Journal of Power Sources, 379, 84, 2018 |
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Recent progresses on nickel-rich layered oxide positive electrode materials used in lithium-ion batteries for electric vehicles Ding Y, Mu DB, Wu BR, Wang R, Zhao ZK, Wu F Applied Energy, 195, 586, 2017 |
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Reproduction of Li battery LiNixMnyCo1-x-yO2 positive electrode material from the recycling of waste battery Liu YC, Liu MC International Journal of Hydrogen Energy, 42(29), 18189, 2017 |
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Use of sacrificial lithium nickel oxide for loading graphitic anode in Li-ion capacitors Jezowski P, Fic K, Crosnier O, Brousse T, Beguin F Electrochimica Acta, 206, 440, 2016 |
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Synthesis and electrochemical characterization of Ni- and Ti-substituted Li2MnO3 positive electrode material using coprecipitation-hydrothermal-calcination method Tabuchi M, Kageyama H, Takamori K, Imanari Y, Nakane K Electrochimica Acta, 210, 105, 2016 |
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Synthesis and electrochemical properties of Li2/3Ni1/3Mn2/3O2 as a novel 5 V class positive electrode material for lithium -ion batteries Chiba K, Shikano M, Sakaebe H Journal of Power Sources, 304, 60, 2016 |
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NaxLi0.7-xNi1-yMnyO2 as a new positive electrode material for lithium-ion batteries Chiba K, Taguchi N, Shikano M, Sakaebe H Journal of Power Sources, 311, 103, 2016 |
10 |
Structural change during charge-discharge for iron substituted lithium manganese oxide Tabuchi M, Kageyama H, Kubota K, Shibuya H, Doumae K, Kanno R Journal of Power Sources, 318, 18, 2016 |