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https://dspace.iiti.ac.in/handle/123456789/8891
Title: | Electrochemical energy storage properties of solvothermally driven ZnFe2O4 microspheres |
Authors: | Saraf, Mohit Natarajan, Kaushik Gupta, Anoop K. Rajak, Richa Mobin, Shaikh M. |
Keywords: | Cost effectiveness;Cyclic voltammetry;Electric discharges;Electrochemical impedance spectroscopy;Electrodes;Energy storage;Iron compounds;Metals;Microspheres;Supercapacitor;Cycling stability;Electrochemical energy storage;High surface area;Large surface area;Solvothermal;Solvothermal techniques;Specific capacitance;Supercapacitor electrodes;Zinc compounds |
Issue Date: | 2019 |
Publisher: | Institute of Physics Publishing |
Citation: | Saraf, M., Natarajan, K., Gupta, A. K., Kumar, P., Rajak, R., & Mobin, S. M. (2019). Electrochemical energy storage properties of solvothermally driven ZnFe2O4 microspheres. Materials Research Express, 6(9) doi:10.1088/2053-1591/ab3339 |
Abstract: | Herein, a facile solvothermal technique was employed to produce ZnFe2O4 microspheres. The physico-chemical properties of these microspheres were probed by various techniques such as XRD, SEM and TEM. Furthermore, these microspheres were utilized to design a cost-effective, binder-free supercapacitor electrode. The obtained noticeable specific capacitance (175 F g-1 at a current density of 5 A g-1) and rate performance with good cycling stability were assigned to the large surface area and unique porosity of ZnFe2O4 microspheres, which allows faster ion-diffusion across the electrode and buffer volume changes during rapid charging-discharging. Electrochemical impedance spectroscopy analysis further verifies the observed phenomena as noted in voltammetric and charge-discharge studies. The work opens up an avenue to consider crystalline, porous and high surface area enabled hetero-metallic oxides to be promising candidates for high-performing supercapacitors. © 2019 IOP Publishing Ltd. |
URI: | https://doi.org/10.1088/2053-1591/ab3339 https://dspace.iiti.ac.in/handle/123456789/8891 |
ISSN: | 2053-1591 |
Type of Material: | Journal Article |
Appears in Collections: | Department of Chemistry |
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