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Dual functions of residue Li-reactive coating with C4H6CoO4 on high-performance LiNiO2 cathode material Li YJ, Deng SY, Chen YX, Gao J, Zhu J, Xue LL, Lei TX, Cao GL, Guo J, Wang SL Electrochimica Acta, 300, 26, 2019 |
2 |
Atomic-scale understanding of non-stoichiometry effects on the electrochemical performance of Ni-rich cathode materials Kong FT, Liang CP, Longo RC, Zheng YP, Cho K Journal of Power Sources, 378, 750, 2018 |
3 |
Enhanced electrochemical properties of LiNiO2-based cathode materials by nanoscale manganese carbonate treatment Zhao JK, Wang ZX, Guo HJ, Li XH Applied Surface Science, 403, 426, 2017 |
4 |
A new design of highly reversible LiNiO2: Defect formation in transition metal site Kobayashi Y, Tabuchi M, Miyashiro H, Kuriyama N Journal of Power Sources, 364, 156, 2017 |
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Layer-structured LiNi0.8Co0.2O2: A new triple (H+/O2-/e-) conducting cathode for low temperature proton conducting solid oxide fuel cells Fan LD, Su PC Journal of Power Sources, 306, 369, 2016 |
6 |
High-Rate Oxygen Evolution Reaction on Al-Doped LiNiO2 Gupta A, Chemelewski WD, Mullins CB, Goodenough JB Advanced Materials, 27(39), 6063, 2015 |
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Significant role of "burned" graphene in determining the morphology of LiNiO2 prepared under the air conditions Ding KQ, Zhao YB, Liu LK, Li Y, Liu L, Wang L, He XM, Guo ZH Electrochimica Acta, 176, 240, 2015 |
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Microstructure and electrochemical properties of magnetron-sputtered LiCoO2/LiNiO2 multi-layer thin film electrode Noh JP, Jung KT, Kwon TH, Cho GB, Huh SC, Choi BK, Kim KW, Nam TH Materials Research Bulletin, 48(12), 4993, 2013 |
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Local trimer orbital ordering in LiNiO2 studied by quantitative convergent beam electron diffraction technique Cao JF, Zou HM, Guo C, Chen ZL, Pu SZ Solid State Ionics, 180(20-22), 1209, 2009 |
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Synthesis and electrochemistry of cubic rocksalt Li-Ni-Ti-O compounds in the phase diagram of LiNiO2-LiTiO2-Li[Li1/3Ti2/3]O-2 Zhang LQ, Noguchi H, Li DC, Muta T, Wang XQ, Yoshio M, Taniguchi I Journal of Power Sources, 185(1), 534, 2008 |