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Porous Iron Cobaltate Nanoneedles Array on Nickel Foam as Anode Materials for Lithium-Ion Batteries with Enhanced Electrochemical Performance

机译:镍泡沫多孔钴酸镍纳米管阵列作为增强锂离子电池负极性能的阳极材料

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摘要

A monocrystalline and porous FeCo2O4 nanoneedles array growing directly on a nickel foam substrate was obtained by a hydrothermal technique accompanying with combustion of the one-dimensional precursor. The average length of the FeCo2O4 nanoneedles is approximately 2 mu m, while the diameter of the root segment of the nanoneedle can be estimated to be around 100 nm, which gradually reduces to only several nanometers at the top. When the as-prepared porous FeCo2O4 nanoneedles array with a high surface area of 58.49 m(2) g(-1) was applied as binder-free electrode in lithium-ion batteries, it exhibited satisfactory electrochemical performance, such as outstanding reversibility (Coulombic efficiency of approximately 92-95%), high specific capacity (1962 mAh g(-1) at the current density of 100 mA g(-1)), and excellent rate performance (discharge capacity of 875 mAh g(-1) at the current density of 2000 mA g(-1)), due to the various favorable conditions. Undoubtedly, the simple but effective strategy can be expanded to other high-performance binary metal-oxide materials.
机译:通过水热技术伴随一维前体的燃烧,获得了直接在镍泡沫基底上生长的单晶且多孔的FeCo2O4纳米针阵列。 FeCo2O4纳米针的平均长度约为2微米,而纳米针根部段的直径估计约为100 nm,在顶部逐渐减小到仅几纳米。将制备后的高表面积58.49 m(2)g(-1)的多孔FeCo2O4纳米针阵列用作锂离子电池中的无粘合剂电极时,它表现出令人满意的电化学性能,例如出色的可逆性(库仑效率大约为92-95%),高比容量(在100 mA g(-1)的电流密度下为1962 mAh g(-1))和出色的倍率性能(放电容量为875 mAh g(-1)由于各种有利条件,电流密度为2000 mA g(-1))。毫无疑问,这种简单而有效的策略可以扩展到其他高性能的二元金属氧化物材料。

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