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- W1968096987 abstract "Electrochemical performances of LiCoO2 as a candidate material for supercapacitor are systematically investigated. LiCoO2 nanomaterials are synthesized via hydrothermal reaction with consequent calcination process. And the particle size increases as the calcination temperature rises. LCO-650 sample with the largest particle size displays the maximum capacitances of 817.5 F·g−1 with the most outstanding capacity retention rate of 96.8% after 2000 cycles. It is shown that large particle size is beneficial to the electrochemical and structural stability of LiCoO2 materials. We speculate that the micron-sized waste LiCoO2 materials have great potential for supercapacitor application. It may provide a novel recovered approach for spent LIBs and effectively relieve the burdens on the resource waste and environment pollution." @default.
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- W1968096987 date "2015-03-01" @default.
- W1968096987 modified "2023-09-24" @default.
- W1968096987 title "Novel application of LiCoO2 as a high-performance candidate material for supercapacitor" @default.
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- W1968096987 doi "https://doi.org/10.1016/s2095-4956(15)60300-x" @default.
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