2009
DOI: 10.1016/j.jpowsour.2008.11.029
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Electrochemical behavior of a lithium-pre-doped carbon-coated silicon monoxide anode cell

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Cited by 79 publications
(59 citation statements)
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“…There are different methods to perform pre-lithiation with SLMP. One route is to spread out the particles on the electrode surface with a subsequent pressing in order to activate the SLMP as described above [33,45,73]. Another possibility is to prepare a SLMP/solvent (e.g., hexane) suspension, which is then dropped onto the surface of the electrode, again followed by a compression of the electrode after the solvent is evaporated [31,74].…”
Section: Pre-lithiation By Direct Contact To Lithium Metalmentioning
confidence: 99%
“…There are different methods to perform pre-lithiation with SLMP. One route is to spread out the particles on the electrode surface with a subsequent pressing in order to activate the SLMP as described above [33,45,73]. Another possibility is to prepare a SLMP/solvent (e.g., hexane) suspension, which is then dropped onto the surface of the electrode, again followed by a compression of the electrode after the solvent is evaporated [31,74].…”
Section: Pre-lithiation By Direct Contact To Lithium Metalmentioning
confidence: 99%
“…Therefore, Li þ can be effectively doped into NiO owing to this similarity of ion size. In addition, Li doping during synthesis may be equivalent to the role of prelithiation, which have beneficial impact on the initial coulombic efficiency [58,59]. Therefore, it is reasonable to predict that Li doping is also favorable to improve the electrical conductivity of NiO powders and will contribute to better electrochemical performance of Li-doped NiO when used as anode materials for LIB batteries.…”
Section: Introductionmentioning
confidence: 99%
“…7 As reported in Ref. 15 and 16, a Li pre-doping method improves the coulombic efficiency of a Si electrode for LIBs. Therefore, we tried using Na pre-doping to improve the coulombic efficiency.…”
mentioning
confidence: 77%