4.6 Article

3D ordered nanoporous NiMoO4 for high-performance supercapacitor electrode materials

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RSC ADVANCES
卷 4, 期 94, 页码 52555-52561

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ROYAL SOC CHEMISTRY
DOI: 10.1039/c4ra09118c

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3D ordered nanocrystalline nanoporous NiMoO4 has been synthesized by nanocasting from mesoporous silica KIT-6, and characterized by low and wide-angle powder X-ray diffraction (PXRD), high-resolution scanning electron microscopy (HR-SEM), transmission electron microscopy (TEM), BET, and BJH techniques, confirming the formation of a 3D high-ordered nanoporous structure of nanocrystalline (similar to 9 nm) NiMoO4 with high specific surface area (141 m(2) g(-1)) and bimodal pore size distribution (4.5 and 12.5 nm). The electrochemical properties of the nanoporous NiMoO4 have been evaluated as electrode material for supercapacitors in a three-electrode configuration in aqueous 3 M KOH solution. The material exhibits superior electrochemical performance including high area specific capacitance (ASC) of 4.25 F cm(-2) (2835 F g(-1)) at 3 mA cm(-2), excellent rate capability (2.18 F cm(-2) at 120 mA cm(-2)), excellent cycling stability in 6000 continuous cycles at different current densities (only 8.4% loss after 3000 cycles at 7.5 mA cm(-2)), and high energy and power densities (141.75 W h kg(-1) in 0.6 kW kg(-1), and 72.6 W h kg(-1) in 24 kW kg(-1)). The superior electrochemical performance of the nanoporous NiMoO4 electrode has been attributed to its structural features, including a 3D high-ordered nanoporous structure with conjunct bimodal pores which facilitates mass transfer and electrolyte accessibility, a high specific surface area which provides more active sites for the pseudocapacitive reactions, and nanosized walls which shorten diffusion paths. These results make the 3D nanoporous NiMoO4 a promising electrode material for high-performance supercapacitors.

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