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- W2621283387 abstract "Rechargeable sodium-ion batteries (SIBs) are receiving intense interest because the resource abundance of sodium and its lithium-like chemistry make them low cost alternatives to the prevailing lithium-ion batteries in large-scale energy storage devices. Two typical classes of materials including transition metal oxides and polyanion compounds have been under intensive investigation as cathodes for SIBs; however, they are still limited to poor stability or low capacity of the state-of-art. Herein, we report a low cost carbon-coated Na2FeSiO4 with simultaneous high capacity and good stability, owing to the highly pure Na-rich triclinic phase and the carbon-incorporated three-dimensional network morphology. The present carbon-coated Na2FeSiO4 demonstrates the highest reversible capacity of 181.0 mAh g–1 to date with multielectron redox reaction that occurred among various polyanion-based SIBs cathodes, which achieves a close-to-100% initial Coulombic efficiency and a stable cycling with 88% capacity retention up to 100 cycles. In addition, such an electrode shows excellent stability either charged at a high voltage of 4.5 V or heated up to 800 °C. The present work might open up the possibility for developing high capacity, good safety and low cost polyanion-based cathodes for rechargeable SIBs." @default.
- W2621283387 created "2017-06-09" @default.
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- W2621283387 date "2017-06-27" @default.
- W2621283387 modified "2023-10-17" @default.
- W2621283387 title "A High Capacity, Good Safety and Low Cost Na<sub>2</sub>FeSiO<sub>4</sub>-Based Cathode for Rechargeable Sodium-Ion Battery" @default.
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- W2621283387 doi "https://doi.org/10.1021/acsami.7b02385" @default.
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