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·174· 工程科学学报,第39卷,第2期 teries.Chem Mater,2012,24(14):2692 [38]Kim D H,Sandi G,Croy J R,et al.Composite 'layered-lay- [31]Castel E,Berg E J.El Kazzi M E,et al.Differential electro- ered-spinel'cathode structures for lithium-ion batteries. chemical mass spectrometry study of the interface of xLi MnO Electrochem Soc,2013,160(1):A31 (1-)LiMO2 (M=Ni,Co,and Mn)material as a positive e- [39]Luo D,Li G S,Fu CC,et al.A new spinel-layered Li-rich lectrode in Li-ion batteries.Chem Mater,2014,26 (17): microsphere as a high-rate cathode material for Li-ion batteries. 5051 Adr Energy Mater,2014.4(11):1400062 [32]Lee D J.Im D M,Ryu Y G,et al.Phosphorus derivatives as [40]Bian X F.Fu Q,Qiu H L,et al.High-performance electrolyte additives for lithium-ion battery:The removal of 02 Li(Lio Nio.Coo.s Mno.52)O2@Li MsO heterostructured generated from lithium-rich layered oxide cathode.J Power cathode material coated with a lithium borate oxide glass layer. 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Effect of surface modifications on the lay鄄 ered solid solution cathodes ( 1 - z ) Li [ Li1 / 3 Mn2 / 3 ] O2 鄄鄄 zLi[Mn0郾 5 - yNi0郾 5 - yCo2y]O2 . Solid State Ionics, 2009, 180 (1) : 50 [36] Jin Y C, Duh J G. Fluorination induced the surface segregation of high voltage spinel on lithium鄄rich layered cathodes for en鄄 hanced rate capability in lithium ion batteries. ACS Appl Mater Interfaces, 2016, 8(6) : 3883 [37] Kobayashi G, Irii Y, Matsumoto F, et al. Improving cycling performance of Li鄄rich layered cathode materials through combi鄄 nation of Al2O3 鄄based surface modification and stepwise precy鄄 cling. J Power Sources, 2016, 303: 250 [38] Kim D H, Sandi G, Croy J R, et al. Composite ‘ layered鄄lay鄄 ered鄄spinel爷 cathode structures for lithium鄄ion batteries. J Electrochem Soc, 2013, 160(1) : A31 [39] Luo D, Li G S, Fu C C, et al. A new spinel鄄layered Li鄄rich microsphere as a high鄄rate cathode material for Li鄄ion batteries. 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Ultrathin spinel membrane鄄encapsu鄄 lated layered lithium鄄rich cathode material for advanced Li鄄ion batteries. Nano Lett, 2014, 14(6): 3550 [45] Wu Y, Murugan A V, Manthiram A. Surface modification of high capacity layered Li[ Li0郾 2 Mn 0郾 54Ni0郾 13 Co0郾 13 ] O2 cathodes by AlPO4 . J Electrochem Soc, 2008, 155(9): A635 ·174·
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