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Starfish-shaped Co3O4/ZnFe2O4 Hollow Nanocomposite: Synthesis, Supercapacity, and Magnetic Properties

机译:海星状Co3O4 / ZnFe2O4空心纳米复合材料:合成,超容量和磁性能

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摘要

A novel starfish-shaped porous Co3O4/ZnFe2O4 hollow nanocomposite was fabricated for the first time by a facile and stepwise hydrothermal approach, utilizing metal-organic frameworks as precursors and sacrificial templates. The morphology evolution in the synthetic process upon reaction time and amount of raw materials were investigated in detail. The as-synthesized starfish-shaped porous Co3O4/ZnFe2O4 composites were studied as an electrode material for supercapacitors showing good capacitive performances. Their specific capacitance can reach as high as 326 F g(-1) at 1 A g(-1). The rational combination of components with different potential windows in a composite material enables a wide overall potential range resulting in the highest energy density of 82.5 Wh kg(-1), significantly larger than that of the single components. Magnetic measurements show that the system presents a large coercivity and high squareness (at 1.8 K, H-c = 884 Oe and Mr/Ms = 0.52) with respect to the individual components, which may be attributed to the unique morphology of Co3O4/ZnFe2O4, as well as surface and interface exchange coupling effects. Materials with this novel design and fabrication may show promise for potential applications in electrochemical energy storage and magnetic devices.
机译:以金属有机骨架为前驱体并采用牺牲模板,通过简便,逐步的水热方法首次制备了一种新型的海星状多孔Co3O4 / ZnFe2O4空心纳米复合材料。详细研究了合成过程中随着反应时间和原料量的变化。研究了合成后的海星状多孔Co3O4 / ZnFe2O4复合材料作为超级电容器的电极材料,显示出良好的电容性能。它们的比电容在1 A g(-1)时可高达326 F g(-1)。复合材料中具有不同电势窗口的组件的合理组合可实现较宽的整体电势范围,从而导致最高能量密度为82.5 Wh kg(-1),远大于单个组件的能量密度。磁测量表明,该系统相对于各个组分具有较大的矫顽力和较高的矩形度(在1.8 K,Hc = 884 Oe,Mr / Ms = 0.52时),这可能是由于Co3O4 / ZnFe2O4的独特形态所致。以及表面和界面交换耦合效应。具有这种新颖设计和制造的材料可能显示出在电化学储能和磁性设备中潜在应用的希望。

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