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Hydrothermal Synthesis of Fe_3O_4@C Spheres as Anode Material for Lithium-Ion Batteries

机译:Fe_3O_4 @ C球体的水热合成作为锂离子电池的阳极材料

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Fe_3O_4@C spheres were synthesized by hydrothermal reaction at 190°C followed by a low temperature heat annealing at 600 °C and applied as an anode material for lithium-ion batteries. The samples were characterized by XRD and SEM. The electrochemical performances of as-synthesized Fe_3O_4@C were systemically investigated. A reversible capacity of 873 mAh g~(-1) is obtained in the second cycle at 400 mA g~(-1). More importantly, the discharge specific capacity can still maintain at about 767 mAh g~(-1) after 80 cycles. Moreover, Fe_3O_4@C spheres electrode shows satisfactory rate capability even at a rate up to 2000 mA g~(-1). Thus, the results demonstrate that Fe_3O_4@C spheres show encouraging application potential to be an advanced anode material for lithium storage.
机译:通过190℃下的水热反应合成Fe_3O_4 @ C球体,然后在600℃下进行低温热退火并用作锂离子电池的阳极材料。样品的特征在于XRD和SEM。系统地研究了AS合成Fe_3O_4 @ C的电化学性能。在400mA g〜(-1)的第二个循环中获得可逆容量为873mAhg〜(-1)。更重要的是,排出的特定容量仍然可以在80次循环后保持约767mAhg〜(-1)。此外,即使以高达2000 mA G〜(-1)的速率,Fe_3O_4 @ C球体电极也显示出令人满意的速率能力。因此,结果表明Fe_3O_4 @ C球体显示令人振奋的应用电位是用于锂储存的先进阳极材料。

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