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首页> 外文期刊>Nanotechnology >Nanowire-core/double-shell of NiMoO4 @C@Ni3S2 arrays on Ni foam: insights into supercapacitive performance and capacitance degradation
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Nanowire-core/double-shell of NiMoO4 @C@Ni3S2 arrays on Ni foam: insights into supercapacitive performance and capacitance degradation

机译:NI-Ni3S2纽约NIMOO4 @ C @ Ni3S2阵列的纳米线芯/双壳:洞察超级电容性能和电容降级

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摘要

The one-dimensional-core/double-shell arrays on Ni foam were prepared by the hydrothermal, carbonized and electrodeposition processes, consisting of NiMoO4 nanowire as a core, an ultrathin carbon layer as an internal shell and Ni3S2 nanosheets an external shell (abbr. NiMoO4@C@Ni3S2), respectively. The ternary heterostructure demonstrates the synergistic effect on the dimensional, interface, surface structures and compositions, resulting from the ordered and functionalized architectures. Therefore, the NiMoO4@C@Ni3S2 electrode integrated the advantages of the electron transfer, electrolyte penetration and ion diffusion. The asymmetric supercapacitor exhibited a high energy density of 1.29 mW h cm(-3) at a power density of 13.99 W cm(-3). Furthermore, we compared the changes in composition, structure and morphology before and after 3000 cycles using the three electrode system. These observations demonstrated that the dissolution of NiMoO4@C@Ni3S2 induced the decay of capacitance and cycling stability, suggesting that we can further develop a strategy to consolidate the electrode structure.
机译:Ni泡沫上的一维芯/双壳阵列由水热,碳化和电沉积工艺制备,由Nimoo4纳米线作为芯,超薄碳层作为内壳和Ni3S2纳米晶片外壳(ABBR。 NIMOO4 @ C @ NI3S2)分别。三元异性结构证明了由有序和功能化架构产生的尺寸,界面,表面结构和组合物的协同效应。因此,NIMOO4 @ C @ NI3S2电极集成了电子传递,电解质渗透和离子扩散的优点。非对称超级电容器以13.99W厘米(-3)的功率密度表现出1.29mW H cm(-3)的高能量密度。此外,我们使用三个电极系统比较了在3000次循环之前和之后的组成,结构和形态学的变化。这些观察结果表明,NiMoo4 @ Ni3S2的溶解诱导电容和循环稳定性的衰减,表明我们可以进一步开发一种巩固电极结构的策略。

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