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High Electrochemical Performance of Nanotube Structured ZnS as Anode Material for Lithium–Ion Batteries

机译:纳米管结构ZnS作为锂离子电池负极材料的高电化学性能

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摘要

By using ZnO nanorods as an ideal sacrificial template, one-dimensional (1-D) ZnS nanotubes with a mean diameter of 10 nm were successfully synthesized by hydrothermal method. The phase composition and microstructure of the ZnS nanotubes were characterized by using XRD (X-ray diffraction), SEM (scanning electron micrograph), and TEM (transmission electronic microscopy) analysis. X-ray photoelectron spectroscopy (XPS) and nitrogen sorption isotherms measurements were also used to study the information on the surface chemical compositions and specific surface area of the sample. The prepared ZnS nanotubes were used as anode materials in lithium-ion batteries. Results show that the ZnS nanotubes deliver an impressive prime discharge capacity as high as 950 mAh/g. The ZnS nanotubes also exhibit an enhanced cyclic performance. Even after 100 charge/discharge cycles, the discharge capacity could still remain at 450 mAh/g. Moreover, cyclic voltammetry (CV) and electrochemical impedance spectroscopy (EIS) measurements were also carried out to evaluate the ZnS electrodes.
机译:以ZnO纳米棒为理想的牺牲模板,通过水热法成功合成了平均直径为10 nm的一维(1-D)ZnS纳米管。 ZnS纳米管的相组成和微观结构通过XRD(X射线衍射),SEM(扫描电子显微镜)和TEM(透射电子显微镜)分析进行表征。还使用X射线光电子能谱(XPS)和氮吸附等温线来研究样品的表面化学组成和比表面积的信息。制备的ZnS纳米管被用作锂离子电池的负极材料。结果表明,ZnS纳米管可提供令人印象深刻的一次放电容量,高达950 mAh / g。 ZnS纳米管还表现出增强的循环性能。即使经过100次充电/放电循环,放电容量仍可以保持在450 mAh / g。此外,还进行了循环伏安法(CV)和电化学阻抗谱(EIS)测量,以评估ZnS电极。

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