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High-capacity and high-rate Ni-Fe batteries based on mesostructured quaternary carbon/Fe/FeO/Fe3O4 hybrid material

机译:基于型鲤科季碳/ Fe / Feo / Fe3O4杂种材料的高容量和高速镍氢电池

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摘要

The Ni-Fe battery is a promising alternative to lithium ion batteries due to its long life, high reliability, and eco-friendly characteristics. However, passivation and self-discharge of the iron anode are the two main issues. Here, we demonstrate that controlling the valence state of the iron and coupling with carbon can solve these problems. We develop a mesostructured carbon/Fe/FeO/Fe3O4 hybrid by a one-step solid-state reaction. Experimental evidence reveals that the optimized system with three valence states of iron facilitates the redox kinetics, while the carbon layers can effectively enhance the charge transfer and suppress self-discharge. The hybrid anode exhibits high specific capacity of 604 mAh⋅g−1 at 1 A⋅g−1 and high cyclic stability. A Ni-Fe button battery is fabricated using the hybrid anode exhibits specific device energy of 127 Wh⋅kg−1 at a power density of 0.58 kW⋅kg−1 and maintains good capacity retention (90%) and coulombic efficiency (98.5%).
机译:由于其长寿命,高可靠性和环保特性,Ni-Fe电池是锂离子电池的有希望的替代品。然而,铁阳极的钝化和自放电是两个主要问题。这里,我们证明控制铁的价状态和与碳的耦合可以解决这些问题。我们通过一步固态反应开发型型碳/ Fe / FeO / Fe3O4杂种。实验证据表明,具有三种价铁的优化系统促进了氧化还原动力学,而碳层可以有效地增强电荷转移并抑制自放电。杂合阳极在1A = 1Ag-1和高循环稳定性下表现出604mah⋅g-1的高比容量。使用混合阳极制造的NI-FE按钮电池,其特定的器件能量为127wh⋅kg-1,功率密度为0.58kw⋅kg-1,保持良好的容量保持(90%)和库仑效率(98.5%) 。

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