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- W2149105418 abstract "A mass scalable dry-coating method was used on a cathode to improve cycling stability at and, in contrast to the conventional wet-coating method, this one did not require a solvent. Electrochemical results of the , , and coatings on cathodes showed a fast capacity fade, resulting in capacity retention at under 1C rate cycling, whereas an uncoated cathode showed 64% retention. This difference was believed to be because the residual coating layers which did not react with the bulk layer accelerated the side reactions with the electrolytes at , leading to increased formation of the surface films. However, when and were used for dry coating, the coating layers completely disappeared, but a higher concentration of coating elements was found near the surfaces. Overall, the cathodes coated with and exhibited 79 and 88% capacity retention, respectively, at under 1C rate cycling." @default.
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- W2149105418 date "2010-01-01" @default.
- W2149105418 modified "2023-10-16" @default.
- W2149105418 title "High Performance LiCoO[sub 2] Cathode Materials at 60°C for Lithium Secondary Batteries Prepared by the Facile Nanoscale Dry-Coating Method" @default.
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- W2149105418 doi "https://doi.org/10.1149/1.3332676" @default.
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