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首页> 外文期刊>RSC Advances >In situ self-assembly of Ni3S2/MnS/CuS/reduced graphene composite on nickel foam for high power supercapacitors
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In situ self-assembly of Ni3S2/MnS/CuS/reduced graphene composite on nickel foam for high power supercapacitors

机译:在高功率超级电容器镍泡沫上的Ni3S2 / MNS / CUS / CUSE / CORECT石墨烯复合材料的原位自组装

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摘要

Transition metal sulfides (TMS), as promising electroactive materials for asymmetric supercapacitors, have been limited due to their relatively poor conductivity and cycle stability. Here ternary Ni3S2/MnS/CuS composites were assembled in situ on nickel foam (NF) using a hydrothermal method via electrostatic adsorption of Ni+, Mn2+ and Cu2+ ions on a reduced graphene (rGO) nanosheet template. The chemical structure was characterized by various analytic methods. Ni3S2/MnS/CuS has spherical morphology assembled from closely packed nanosheets, while Ni3S2/MnS/CuS@rGO has a three-dimensional porous spherical structure with much lower diameter because rGO nanosheets can play the role of a template to induce the growth of Ni3S2/MnS/CuS. At a current density of 1 A g(-1), the specific capacitance was obtained to be 1028 F g(-1) for Ni3S2/MnS/CuS, 628.6 F g(-1) for Ni3S2/MnS@rGO, and 2042 F g(-1) for Ni3S2/MnS/CuS@rGO, respectively. Charge transfer resistance (R-ct) of Ni3S2/MnS/CuS@rGO (0.001 omega) was much lower than that of Ni3S2/MnS@rGO by 0.02 omega, and lower than that of Ni3S2/MnS/CuS by 0.017 omega. After 5000 cycles, the Ni3S2-MnS-CuS@RGO electrode maintains 78.3% of the initial capacity at 20 A g(-1). An asymmetric supercapacitor was subsequently assembled using Ni3S2/MnS/CuS@rGO as the positive electrode and rGO as the negative electrode. The specific capacitance of asymmetric batteries was maintained at 90.8% of the initial state after 5000 GCD.
机译:过渡金属硫化物(TMS),作为不对称超级电容器的有前景的电活性材料,由于其相对较差的导电性和循环稳定性而受到限制。这里,通过静电吸附在还原石墨烯(RGO)纳米片模板上,使用水热法在镍泡沫(NF)上原位组装镍泡沫(NF)。化学结构的特征在于各种分析方法。 NI3S2 / MNS / CU具有从紧密包装的纳米片组成的球形形态,而Ni3S2 / MNS / CUS @ Rgo具有三维多孔球形结构,直径远低,因为Rgo Nanoshss可以发挥模板的作用,以诱导Ni3S2的生长/ mns / cus。在电流密度为1Ag(-1),对于Ni3S2 / MNS / MNS @ RGO的Ni3S2 / MNS / CUS,628.6 f G(-1),获得特定电容为1028fg(-1),以及2042 F G(-1)分别用于NI3S2 / MNS / CUS @ RGO。 Ni3S2 / MNS / CU / CUS @ RGO(0.001ω)的电荷转移电阻(R-CT)远低于Ni3S2 / MNS @ Rgo的0.02ω,低于Ni3S2 / MNS / CUS的0.017ω的速度低得多。在5000个循环之后,Ni3S2-MNS-CUS @ Rgo电极在20Ag(-1)时保持初始容量的78.3%。随后使用Ni3 S2 / MNS / CUS @ RGO作为正极和RGO作为负电极组装不对称超级电容器。在5000gCD后,不对称电池的比电容在初始状态的90.8%中保持在90.8%。

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    《RSC Advances》 |2019年第54期|共11页
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  • 正文语种 eng
  • 中图分类 化学;
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