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Facile Route to an Efficient NiO Supercapacitor with a Three-Dimensional Nanonetwork Morphology

机译:具有三维纳米网络形态的高效NiO超级电容器的便捷途径

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摘要

NiO nanostructures with three distinct morphologies were fabricated by a sol—gel method and their morphology-dependent supercapacitor properties were exploited. The nanoflower- shaped NiO with a distinctive three-dimensional (3D) network and the highest pore volume shows the best supercapacitor properties. The nanopores in flower-shaped nanostructures, offering advantages in contact with and transport of the electrolyte, allow for 3D nanochannels in NiO structure, providing longer electron pathways. The XPS and EIS data of the NiO nanostructure confirm that the flower-shaped NiO, which has the lowest surface area among the three morphologies, was effectively optimized as a superior electrode and yielded the greatest pseudocapacitance. This study indicates that forming a 3D nanonetwork is a straightforward means of improving the electrochemical properties of a supercapacitor.
机译:通过溶胶-凝胶法制备了具有三种不同形态的NiO纳米结构,并利用了形态依赖的超级电容器性能。具有独特的三维(3D)网络和最大孔体积的纳米花状NiO显示出最佳的超级电容器性能。花状纳米结构中的纳米孔具有与电解质接触和运输的优势,可在NiO结构中形成3D纳米通道,从而提供更长的电子路径。 NiO纳米结构的XPS和EIS数据证实,三种形态中表面积最小的花形NiO被有效地优化为优质电极,并产生了最大的假电容。这项研究表明,形成3D纳米网络是提高超级电容器电化学性能的直接方法。

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