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- W3088810500 abstract "Core–shell porous Fe3O4@C (CP-Fe3O4@C) microspheres were synthesized using an environmentally viable hydrothermal method. Carbonization can reduce Fe2O3 and provide a conductive coating simultaneously. CP-Fe3O4@C microspheres as an active material for Lithium-ion batteries demonstrate pseudocapacity for improved rate performance. With a distinct nanostructure and pseudocapacitive effect, the CP-Fe3O4@C microspheres show excellent electrochemical performance (∼785mAh·g -1 at 0.3A·g -1 after 200 cycles). Capacity measurements of CP-Fe3O4@C microspheres suggest near 90% pseudocapacitance at relatively low scan rates (5mV·s -1 )." @default.
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- W3088810500 date "2020-11-10" @default.
- W3088810500 modified "2023-10-16" @default.
- W3088810500 title "Facile synthesis of core–shell porous Fe 3 O 4 @carbon microspheres with high lithium storage performance" @default.
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- W3088810500 doi "https://doi.org/10.5802/crchim.18" @default.
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