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Low-temperature synthesis of two-dimensional nanostructured Co3O4 and improved electrochemical properties for lithium-ion batteries

机译:二维纳米结构Co3O4的低温合成及改善的锂离子电池电化学性能

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摘要

Urea as a cheap reagent is very useful in preparation two-dimensional metal oxides with tunable crystal morphologies, while refluxing method is a simple route to control the decomposition of urea. Here, a low temperature refluxing in the presence of urea is developed to prepare porous Co3O4 as anode material for lithium-ion batteries. The self-assembly cobalt hydrotalcite-like compounds (Co-HLC) is firstly synthesized through refluxing the mixture of cobaltous nitrate and urea. After pyrolysis, the flower-like morphology of Co-HLC is successfully maintained in the final product of Co3O4. The ordered two-dimensional Co3O4 nanosheets provide good contact with electrolyte and stable porous structure during lithiation/delithiation. Co3O4-120 synthesized under refluxing temperature of 120 °C shows the initial charge capacities of 722 and 741 mAh g−1 at the 2nd and 100th cycle under 100 mA g−1. Moreover, Co3O4-120 as electrode for a supercapacitor presents excellent capacitance, 167 F g−1 after 3000 cycles at 1 A g−1. Under 5, 10 and 20 A g−1, Co3O4-120 electrode delivers 128, 104 and 90 F g−1, respectively. The porous structure in Co3O4 with enhanced electrochemical performance indicates low temperature refluxing preparation is an applicable and energy-saved method to synthesize transitional metal oxide with tunable crystal morphologies.
机译:尿素作为廉价试剂在制备具有可调晶体形态的二维金属氧化物中非常有用,而回流法是控制尿素分解的简单途径。在此,开发了在尿素存在下的低温回流以制备多孔Co 3 O 4作为锂离子电池的负极材料。首先通过回流硝酸钴和尿素的混合物来合成自组装钴水滑石样化合物(Co-HLC)。热解后,Co-HLC的花状形态成功地保留在了Co3O4的最终产物中。有序的二维Co3O4纳米片在锂化/脱锂期间提供了与电解质的良好接触和稳定的多孔结构。在120°C回流温度下合成的Co3O4-120在100 mA g-1下的第2和第100个循环中显示出722和741 mAh g-1的初始充电容量。此外,作为超级电容器电极的Co3O4-120在1 A g-1下经过3000次循环后具有167 F g-1的优异电容。在5、10和20 A g-1下,Co3O4-120电极分别提供128、104和90 F g-1。 Co3O4的多孔结构具有增强的电化学性能,表明低温回流制备是一种合成具有可调谐晶体形态的过渡金属氧化物的适用且节能的方法。

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