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An all chemical route to design a hybrid battery-type supercapacitor based on ZnCo2O4/CdS composite nanostructures

Recently, spinel-type binary metal oxides have attracted enormous interest in energy storage devices. In supercapacitors improving energy density is still challenging task and the composite nanostructures are found to address this issue in some extent. Herein, a composite nanostructure based on ZnCo...

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Published in:Current applied physics 2020, 20(12), , pp.1416-1423
Main Authors: Patil, Dipali S., Teli, Aviraj M., Choi, Won Jun, Pawar, Sachin A., Shin, Jae Cheol, Kim, Hyo Jin
Format: Article
Language:English
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Summary:Recently, spinel-type binary metal oxides have attracted enormous interest in energy storage devices. In supercapacitors improving energy density is still challenging task and the composite nanostructures are found to address this issue in some extent. Herein, a composite nanostructure based on ZnCo2O4/CdS was synthesized on nickel foam using hydrothermal and successive ionic layer adsorption and reaction (SILAR) methods. A hydrothermally synthesized ZnCo2O4 nanoflowers were coated by CdS nanoparticles by varying SILAR cycles and studied its electrochemical performance. The ZnCo2O4/CdS nanostructured electrode with optimized four SILAR cycles of CdS coating exhibited a high areal capacity, energy density and power density of 2658 mCcm−2, 517 μWhcm−2 and 17.5 mWcm−2 at 25 mA, which is higher than pristine ZnCo2O4. This work show ZnCo2O4/CdS nanostructure is a favorable electrode for supercapacitors. Synthesis and fabrication of ZnCo2O4 and ZnCo2O4/CdS electrode by all chemical synthesis route. [Display omitted] •ZnCo2O4 electrode is synthesized by hydrothermal technique.•ZnCo2O4/CdS composite is synthesized using chemical route.•ZnCo2O4/CdS exhibited an areal capacitance of 2658 mFcm−2 at a scan rate of 5 mVs−1.•An energy density of 517 517 μWhcm−2 is observed.•An all chemical route is adopted for the efficient battery-type supercapacitor fabrication.
ISSN:1567-1739
1878-1675
DOI:10.1016/j.cap.2020.09.007