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- W1975967045 abstract "A facile hydrothermal route has been developed to fabricate the metastable VO2 (B) ultra-thin nanobelt arrays, which can be converted into V2O5 porous nanobelt arrays after calcinating VO2 (B) in air at 400 °C for 1 h. The influence of hydrothermal time to the crystallinity and morphology of the VO2 phase has been studied. A possible mechanism for the formation of VO2 nanobelt arrays has been proposed in this paper. As a cathode material for lithium ion batteries, the V2O5 nanobelt arrays show excellent rate capability and cycling stability. An initial discharge capacity of 142 mA h g−1 can be delivered at a current density of 50 mA g−1 with almost no capacity fading after 100 cycles. Even at a current density of 1000 mA g−1, they still exhibit the capacity of 130 mA h g−1 and superior capacity retention capability. The excellent electrochemical properties are attributed to the ultra-thin thickness and the porous structures of the nanobelts." @default.
- W1975967045 created "2016-06-24" @default.
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- W1975967045 date "2014-12-01" @default.
- W1975967045 modified "2023-10-12" @default.
- W1975967045 title "Template-free synthesis of vanadium oxides nanobelt arrays as high-rate cathode materials for lithium ion batteries" @default.
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- W1975967045 doi "https://doi.org/10.1016/j.jpowsour.2014.06.103" @default.
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