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Biomimetic Synthesis of Polydopamine Coated ZnFe2O4 Composites as Anode Materials for Lithium-IonBatteries

机译:仿生合成聚多巴胺包覆的ZnFe2O4复合材料作为锂离子阳极材料电池

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摘要

Metal oxides as anode materials for lithium storage suffer from poor cycling stability due to their conversion mechanisms. Here, we report an efficient biomimetic method to fabricate a conformal coating of conductive polymer on ZnFe2O4 nanoparticles, which shows outstanding electrochemical performance as anode material for lithium storage. Polydopamine (PDA) film, a bionic ionic permeable film, was successfully coated on the surfaces of ZnFe2O4 particles by the self-polymerization of dopamine in the presence of an alkaline buffer solution. The thickness of PDA coating layer was tunable by controlling the reaction time, and the obtained ZnFe2O4/PDA sample with 8 nm coating layer exhibited an outstanding electrochemical performance in terms of cycling stability and rate capability. ZnFe2O4/PDA composites delivered an initial discharge capacity of 2079 mAh g–1 at 1 A g–1 and showed a minimum capacity decay after 150 cycles. Importantly, the coating layer improved the rate capability of composites compared to that of its counterpart, the bare ZnFe2O4 particle materials. The outstanding electrochemical performance was because of the buffering and protectiveeffects of the PDA coating layer, which could be a general protectionstrategy for electrode materials in lithium-ion batteries.
机译:金属氧化物作为锂存储的阳极材料,由于其转化机理而使其循环稳定性差。在这里,我们报告了一种有效的仿生方法,以在ZnFe2O4纳米颗粒上制备导电聚合物的保形涂层,该涂层表现出出色的电化学性能,可作为锂存储的阳极材料。在碱性缓冲溶液的存在下,通过多巴胺的自聚合作用,成功地将聚多巴胺(PDA)膜(一种仿生离子可渗透性膜)涂覆在ZnFe2O4颗粒的表面上。通过控制反应时间可以调节PDA涂层的厚度,并且获得的具有8 nm涂层的ZnFe2O4 / PDA样品在循环稳定性和倍率性能方面表现出出色的电化学性能。 ZnFe2O4 / PDA复合材料在1 A g -1 时的初始放电容量为2079 mAh g –1 ,在150次循环后显示出最小的容量衰减。重要的是,与相应的裸露ZnFe2O4颗粒材料相比,涂层提高了复合材料的速率性能。出色的电化学性能是由于具有缓冲和保护作用PDA涂层的效果,可能是一般保护锂离子电池电极材料的策略。

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