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Freestanding Three-Dimensional CuO/NiO Core–Shell Nanowire Arrays as High-Performance Lithium-Ion Battery Anode

机译:独立的三维CuO / NiO核壳纳米线阵列作为高性能锂离子电池阳极

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摘要

We demonstrate significant improvement of CuO nanowire arrays as anode materials for lithium ion batteries by coating with thin NiO nanosheets conformally. The NiO nanosheets were designed two kinds of morphologies, which are porous and non-porous. By the NiO nanosheets coating, the major active CuO nanowires were protected from direct contact with the electrolyte to improve the surface chemical stability. Simultaneously, through the observation and comparison of TEM results of crystalline non-porous NiO nanosheets, before and after lithiation process, we clearly prove the effect of expected protection of CuO, and clarify the differences of phase transition, crystallinity change, ionic conduction and the mechanisms of the capacity decay further. Subsequently, the electrochemical performances exhibit lithiation and delithiation differences of the porous and non-porous NiO nanosheets, and confirm that the presence of the non-porous NiO coating can still effectively assist the diffusion of Li+ ions into the CuO nanowires, maintaining the advantage of high surface area, and improves the cycle performance of CuO nanowires, leading to enhanced battery capacity. Optimally, the best structure is validated to be non-porous NiO nanosheets, in contrary to the anticipated porous NiO nanosheets. In addition, considering the low cost and facile fabrication process can be realized further for practical applications.
机译:我们证明了通过保形地涂覆薄薄的NiO纳米片,可显着改善作为锂离子电池阳极材料的CuO纳米线阵列。 NiO纳米片被设计为两种形态,即多孔和无孔。通过NiO纳米片涂层,可以保护主要的活性CuO纳米线不与电解质直接接触,从而提高表面化学稳定性。同时,通过观察和比较结晶无孔NiO纳米片在锂化之前和之后的TEM结果,我们清楚地证明了预期的CuO保护效果,并阐明了相变,结晶度变化,离子传导和离子交换的差异。容量衰减的机理进一步恶化。随后,电化学性能表现出多孔和无孔NiO纳米片的锂化和去锂化差异,并证实无孔NiO涂层的存在仍然可以有效地帮助Li +离子扩散到CuO纳米线中,从而保持了高表面积,并改善了CuO纳米线的循环性能,从而提高了电池容量。最佳地,与预期的多孔NiO纳米片相反,最佳结构被验证为无孔NiO纳米片。另外,考虑到低成本和容易的制造过程,可以进一步为实际应用实现。

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