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Template-Assisted Synthesis of Nickel Sulfide Nanowires: Tuning the Compositions for Supercapacitors with Improved Electrochemical Stability

机译:模板辅助合成的硫化镍纳米线:调整具有改善的电化学稳定性的超级电容器的组成

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Ni nanowires were first synthesized via a chemical method without surfactants or a magnetic field. A series of nickel sulfide nanowires (Ni3S2-Ni, Ni3S2-NiS-Ni, and Ni3S2-NiS) have been successfully prepared by a controlled sacrificial template route based on the conductive Ni nanowire template. Electrochemical characterizations indicate that Ni3S2-NiS nanowires present superior redox reactivity with a high specific capacitance of 1077.3 F g(-1) at 5 A g(-1). Besides, its specific capacitance can remain about 76.3% after 10 000 cycles at 20 A g(-1). On the contrary, the nickel-preserving sulfide nanowires (Ni3S2Ni and Ni3S2-NiS-Ni) deliver enhanced cycling stability as 100% of the initial specific capacitance of Ni3S2-Ni is retained after 10'000 cycles. The outstanding electrochemical stability can be attributed to the interaction between nickel sulfides, and the conductive nickel nanowires.
机译:Ni纳米线首先通过化学方法合成,没有表面活性剂或磁场。通过基于导电Ni纳米线模板的受控牺牲模板路线成功地制备了一系列硫化镍纳米线(Ni3S2-Ni,Ni3S2-NiS-Ni和Ni3S2-NiS)。电化学表征表明,Ni3S2-NiS纳米线在5 A g(-1)时具有1077.3 F g(-1)的高比电容,具有出色的氧化还原反应性。此外,在20 A g(-1)下经过1万次循环后,其比电容可保持约76.3%。相反,保留镍的硫化物纳米线(Ni3S2Ni和Ni3S2-NiS-Ni)提供了增强的循环稳定性,因为在10 000次循环后仍保留了Ni3S2-Ni初始比电容的100%。出色的电化学稳定性可以归因于硫化镍和导电镍纳米线之间的相互作用。

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