2019
DOI: 10.1016/j.electacta.2019.134825
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Li7La2.75Ca0.25Zr1.75Nb0.25O12@LiClO4 composite film derived solid electrolyte interphase for anode-free lithium metal battery

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Cited by 64 publications
(36 citation statements)
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“…3g ) can be calculated by subtracting the value in the first cycle with that of the second cycle from the Li/Cu cell protocol. To conclude, the Li/Cu cell is a useful protocol to provide reliable information for the study of electrolyte 27 , 28 , 31 , and surface engineering approaches 29 , 36 , 37 for mitigating the irr-CE ascribed to dead Li and SEI formation.…”
Section: Resultsmentioning
confidence: 99%
“…3g ) can be calculated by subtracting the value in the first cycle with that of the second cycle from the Li/Cu cell protocol. To conclude, the Li/Cu cell is a useful protocol to provide reliable information for the study of electrolyte 27 , 28 , 31 , and surface engineering approaches 29 , 36 , 37 for mitigating the irr-CE ascribed to dead Li and SEI formation.…”
Section: Resultsmentioning
confidence: 99%
“…3g. The Li//Cu cell is a useful protocol to provide reliable information for the study of electrolyte 23,24,27 , and surface engineering approaches 25,31,32 for mitigating the irreversible Coulombic efficiency ascribed to dead Li formation and reductive electrolyte decomposition.…”
Section: Resultsmentioning
confidence: 99%
“…Hwang and co‐workers have reported a series of different current‐collector coatings films and artificial SEIs including polyethylene oxide (PEO), [ 53 ] multilayer graphene (MLG), [ 54 ] garnet (Li 7 La 2.75 Ca 0.25 Zr 1.75 Nb 0.25 O 12 ), [ 55 ] and graphene oxide. [ 56 ] The use of PEO and multilayer graphene led to moderate improvements in capacity retention over the control case with LFP cathodes and an unoptimized ether‐based electrolyte.…”
Section: Strategies For Improving Performance Of Anode‐free Full Cellsmentioning
confidence: 99%