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首页> 外文期刊>Scientific reports. >Microwave Assisted Synthesis of Porous NiCo2O4 Microspheres: Application as High Performance Asymmetric and Symmetric Supercapacitors with Large Areal Capacitance
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Microwave Assisted Synthesis of Porous NiCo2O4 Microspheres: Application as High Performance Asymmetric and Symmetric Supercapacitors with Large Areal Capacitance

机译:微波辅助合成多孔尼科2O4微球:应用作为高性能的不对称和对称超级电容器,具有大的面积电容

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Large areal capacitance is essentially required to integrate the energy storage devices at the microscale electronic appliances. Energy storage devices based on metal oxides are mostly fabricated with low mass loading per unit area which demonstrated low areal capacitance. It is still a challenge to fabricate supercapacitor devices of porous metal oxides with large areal capacitance. Herein we report microwave method followed by a pyrolysis of the as-prepared precursor is used to synthesize porous nickel cobaltite microspheres. Porous NiCo2O4 microspheres are capable to deliver large areal capacitance due to their high specific surface area and small crystallite size. The facile strategy is successfully demonstrated to fabricate aqueous-based asymmetric &symmetric supercapacitor devices of porous NiCo2O4 microspheres with high mass loading of electroactive materials. The asymmetric &symmetric devices exhibit maximum areal capacitance and energy density of 380?mF cm(-2) &19.1?Wh Kg(-1) and 194?mF cm(-2) &4.5?Wh Kg(-1) (based on total mass loading of 6.25 &6.0?mg) respectively at current density of 1?mA cm(-2). The successful fabrication of symmetric device also indicates that NiCo2O4 can also be used as the negative electrode material for futuristic asymmetric devices.
机译:基本上需要大的面积电容来集成在微尺度电子设备处的能量存储装置。基于金属氧化物的能量存储装置主要由每单位面积的低质量负荷制成,其显示出低的面积电容。制造具有大面积电容的多孔金属氧化物的超级电容器装置仍然是一项挑战。在此,我们报告了微波方法,然后再解析了制备的前体,用于合成多孔镍钴罐微球。多孔Nico2O4微球能够通过它们的高比表面积和小微晶尺寸提供大的面积电容。成功证明了容易策略以制造具有高质量负载电活性物质的多孔NiCO 2 O 4微球的水性非对称和对称超级涂物装置。非对称和对称装置表现出最大的面积电容和380?MF cm(-2)和19.1〜1的能量密度。Wh kg(-1)和194?mf cm(-2)和4.5?wh kg(-1)(基于总质量负荷为6.25&6.0?mg),分别以1Ωma(-2)的电流密度。对称装置的成功制造还表明NicO2O4也可以用作未来的非对称装置的负电极材料。

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