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首页> 外文期刊>New Journal of Chemistry >Fabrication of 3D Co3O4-Ni3(VO4)2 heterostructured nanorods on nickel foam possessing improved electrochemical properties for supercapacitor electrodes
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Fabrication of 3D Co3O4-Ni3(VO4)2 heterostructured nanorods on nickel foam possessing improved electrochemical properties for supercapacitor electrodes

机译:在镍泡沫上制备3D Co3O4-Ni3(VO4)2异质结构纳米棒具有改善的超级电容器电极电化学性能

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摘要

Three-dimensional (3D) Co3O4-Ni3(VO4)2 heterostructured nanorods on nickel foam with excellent electrochemical behavior were synthesized by a facile strategy. A growth mechanism was proposed to explain the formation of the composite. The composite combined separately the advantages of the good rate capability of Co3O4 and the high specific capacitances of Ni3(VO4)2, and showed higher specific capacitances than Co3O4 and better rate capability than Ni3(VO4)2. A maximum specific capacitance of 1401 F g~(-1) and energy density of 31.2 Wh kg~(-1) were achieved at a current density of 0.5 A g~(-1), and 70.3% of this value was retained at a high current density of 8 A g~(-1). After 1000 cycles, 98.3% and 90.9% was retained at 0.5 A g~(-1) and 8 A g~(-1), respectively. The excellent electrochemical performance renders the composite a promising electrode for supercapacitors.
机译:通过一种简便的策略,合成了具有优异电化学性能的泡沫镍上的三维(3D)Co3O4-Ni3(VO4)2异质纳米棒。提出了一种生长机理来解释复合材料的形成。该复合材料分别结合了Co3O4的良好定速能力和Ni3(VO4)2的高比电容的优点,并显示出比Co3O4高的比电容和比Ni3(VO4)2更好的定速能力。在0.5 A g〜(-1)的电流密度下,获得的最大比电容为1401 F g〜(-1),能量密度为31.2 Wh kg〜(-1),并且该值的70.3%保持在8 A g〜(-1)的高电流密度。在1000次循环后,分别在0.5A g〜(-1)和8A g〜(-1)下保留98.3%和90.9%。优异的电化学性能使该复合材料成为超级电容器的有希望的电极。

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