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Porous gamma-Fe2O3 spheres coated with N-doped carbon from polydopamine as Li-ion battery anode materials

机译:聚多巴胺的N掺杂碳包覆的多孔γ-Fe2O3球作为锂离子电池负极材料

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摘要

Nitrogen doping has been demonstrated to play a crucial role in controlling the electronic properties of carbon-based composites. In this paper, nitrogen-doped carbon coated gamma-Fe2O3 (NC@gamma-Fe2O3) composite was successfully fabricated through a facile and high-yield strategy, including a hydrothermal reaction process for porous gamma-Fe2O3 and a subsequent coating of nitrogen-doped carbon by using dopamine as precursor. The resulting composite combines the superior properties of porous Fe2O3 and heteroatom-doped conductive carbon layer derived from polydopamine. When used as the anode material of the lithium-ion battery, the as-prepared NC@gamma-Fe2O3 composite exhibits excellent lithium storage properties in terms of high capacity, stable cycling performance (869.6mAh g(-1) at the current density of 0.5 A g(-1) after 150 cycles) and excellent rate capability.
机译:氮掺杂已被证明在控制碳基复合材料的电子性能中起着至关重要的作用。本文通过一种简便而高产的策略成功地制备了氮掺杂的碳包覆的γ-Fe2O3(NC @ gamma-Fe2O3)复合材料,包括多孔γ-Fe2O3的水热反应工艺以及随后的氮掺杂涂层使用多巴胺作为前体的碳。所得复合材料结合了多孔Fe2O3和衍生自聚多巴胺的杂原子掺杂的导电碳层的优异性能。当用作锂离子电池的负极材料时,所制备的NC @γ-Fe2O3复合物在高容量,稳定的循环性能(电流密度为869.6mAh g(-1))方面表现出优异的锂存储性能。 150次循环后为0.5 A g(-1))和出色的速率处理能力。

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