Fe2O3 hollow sphere nanocomposites for supercapacitor applications

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Abstract

Nanomaterials have attracted increasing interest in electrochemical energy storage and conversion. Hollow sphere Fe2O3 nanocomposites were successfully prepared through facile low temperature water-bath method with carbon sphere as hard template. The morphology and microstructure of samples were characterized by X-ray diffraction (XRD) and Scanning electron microscope (SEM), respectively. Through hydrolysis mechanism, using ferric chloride direct hydrolysis, iron hydroxide coated on the surface of carbon sphere, after high temperature calcination can form the hollow spherical iron oxide materials. Electrochemical performances of the hollow sphere Fe2O3 nanocomposites electrodes were investigated by cyclic voltammery (CV) and galvanostatic charge/discharge. The Pure hollow sphere Fe2O3 nanocomposites achieves a specific capacitance of 125 F g-1 at the current density of 85 mA g-1. The results indicate that the uniform dispersion of hollow ball structure can effectively reduce the particle reunion in the process of charging and discharging.

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APA

Zhao, Y., Wen, Y., Xu, B., Lu, L., & Ren, R. (2018). Fe2O3 hollow sphere nanocomposites for supercapacitor applications. In IOP Conference Series: Earth and Environmental Science (Vol. 121). Institute of Physics Publishing. https://doi.org/10.1088/1755-1315/121/4/042004

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