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首页> 外文期刊>New Journal of Chemistry >Electrochemically growth-controlled honeycomb-like NiMoO4 nanoporous network on nickel foam and its applications in all-solid-state asymmetric supercapacitors
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Electrochemically growth-controlled honeycomb-like NiMoO4 nanoporous network on nickel foam and its applications in all-solid-state asymmetric supercapacitors

机译:镍泡沫上的电化学生长控制的蜂窝状Nimoo4纳米多孔网络及其在全固态不对称超级电容器中的应用

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摘要

A honeycomb-like NiMoO4 nanoporous network electrode was synthesized on nickel foam using an electrodeposition method and used for the fabrication of asymmetric supercapacitors (ASCs). The growth process of the NiMoO4 nanostructure was controlled by varying the number of electrochemical cycles. The evolution of the NiMoO4 nanoflakes with the electrochemical cycles was confirmed by field emission scanning electron microscopy. The supercapacitive properties of NiMoO4 nanostructure were measured by cyclic voltammetry, galvanostatic charge discharge, and electrochemical impedance spectroscopy. The well-grown NiMoO4 nanoporous network exhibited a highest specific capacitance of 1475 F g(-1) at a current density of 1 A g(-1) in an aqueous KOH electrolyte with a good rate capability of 72.8% when the current density was increased 20 fold. The nanoporous network also exhibited a capacitive retention of 87.9% after 5000 charge-discharge cycles at a fixed current density of 20 A g(-1). A NiMoO4//reduced graphene oxide (rGO)-based solid state ASC was fabricated using a poly(vinyl alcohol)-KOH gel electrolyte. The NiMoO4//rGO ASC delivered a maximum energy density of 45 W h kg(-1) and a power density of 14.5 kW kg(-1) as well as an electrochemical stability of 84% after 5000 cycles, highlighting the potential of NiMoO4//rGO ASCs for portable electronic applications.
机译:使用电沉积法在镍泡沫上合成蜂窝状的Nimoo4纳米多孔网络电极,并用于制造不对称超级电容器(ASCS)。通过改变电化学循环的数量来控制NiMoo4纳米结构的生长过程。通过现场发射扫描电子显微镜确认了与电化学循环的NIMOO4纳米薄膜的进化。通过循环伏安法,电镀电荷放电和电化学阻抗光谱法测量NiMoo4纳米结构的超级电容性。生长的NIMOO4纳米多孔网络在含水KOH电解质中的电流密度为1Ag(-1)的电流密度,良好的速率能力为72.8%,当电流密度为72.8%增加20倍。在固定电流密度为20Ag(-1)的固定电流密度,纳米多孔网络在5000充放电循环后也表现出87.9%的电容保留。使用聚(乙烯醇)-KOH凝胶电解质制造尼莫杜4 //降低的石墨烯氧化物(RGO)的基于固态ASC。 NIMOO4 // RGO ASC提供了45 W H kg(-1)的最大能量密度,功率密度为14.5千瓦kg(-1),以及5000次循环后的电化学稳定性为84%,突出显示尼莫4的潜力//为便携式电子应用程序提供RGO ASC。

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