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Synthesis of Ni@NiSn Composite with High Lithium‐Ion Diffusion Coefficient for Fast‐Charging Lithium‐Ion Batteries

机译:高锂离子扩散系数快速充电锂离子电池Ni @ NiSn复合材料的合成

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摘要

To solve the problems of fast‐charging of lithium‐ion batteries in essence, development of new electrode materials with higher lithium‐ion diffusion coefficients is the key. In this work, a novel flower‐like Ni@SnNi structure is synthesized via a two‐step process design, which consists of the fabrication of Ni cores by spray pyrolysis followed by the formation of SnNi shells via a simple oxidation–reduction reaction. The obtained Ni@SnNi composite exhibits an initial capacity of ≈693 mA h g and a reversible capacity of ≈570 mA h g after 300 charge/discharge cycles at 0.5 C, and maintains 450 mA h g even at a high rate of 3 C. Further, it is proved that a Ni@SnNi composite possesses high lithium‐ion diffusion coefficient (≈10 ), which is much higher than those (≈10 ) reported previously, which can be mainly attributed to the unique flower‐like Ni@SnNi structure. In addition, the full cell performance (Ni@SnNi‐9h/graphite vs LiCoO ) with a capacity ratio of 1.13 (anode/cathode) is also tested. It is found that even at 2 C rate charging/discharging, the capacity retention at 100 cycles is still close to 89%. It means that Ni@SnNi‐9h is a promising anode additive for lithium‐ion batteries with high energy density and power density.
机译:从本质上解决锂离子电池快速充电的问题,开发具有更高锂离子扩散系数的新型电极材料是关键。在这项工作中,通过两步工艺设计合成了一种新颖的花状Ni @ SnNi结构,该结构包括通过喷雾热解法制备Ni核,然后通过简单的氧化还原反应形成SnNi壳。所获得的Ni @ SnNi复合材料在0.5 C的300次充电/放电循环后,具有约693 mA hg的初始容量和约570 mA hg的可逆容量,即使在3 C的高速率下也保持450 mA hg。事实证明,Ni @ SnNi复合材料具有较高的锂离子扩散系数(≈10),远高于先前报道的锂离子扩散系数(≈10),这主要归因于独特的花状Ni @ SnNi结构。此外,还测试了容量比为1.13(阳极/阴极)的全电池性能(Ni @ SnNi-9h /石墨vs LiCoO)。发现即使在2C速率的充电/放电下,在100次循环时的容量保持率仍接近89%。这意味着Ni @ SnNi-9h是具有高能量密度和功率密度的锂离子电池极有希望的负极添加剂。

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