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Information Journal Paper

Title

Synthesis of Nickel-Nickel oxide foam by electrochemical method and its application in supercapacitor

Pages

  17-25

Abstract

 This paper investigates the applicability of nickel-nickel oxide metallic foams as current collector for Supercapacitor. A simple galvanic displacement reaction was employed to fabricate dendritic Cu dealloyed nanoporous Ni-NiO Foam. A comprehensive characterization of foams is presented and includes the analysis of their structural, chemical, and electrochemical properties. The process is studied under well-defined experimental conditions using XRD, SEM, electrochemical impedance spectroscopy (EIS) and galvanostatic charge and discharge (GCD). XRD results confirm the presence of nickel and nickel oxide phases. Also, in the SEM test, porosities were observed in the range of micro and dendrites in the nanoscale. The outcome of these experiments demonstrates that the Ni-NiO Foam has a higher specific capacitance. The best specific capacitance for Ni-NiO Foam was calculated 924 F/g at 1A/g. Ni-NiO Foam maintains 81. 8% of its specific capacitance at a current density of 20 A/g and after 3000 cycles. The created foam electrode can be used as a current collector for the deposition of subsequent layers and is a candidate for use in Supercapacitors.

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  • Cite

    APA: Copy

    MIRZAEE, MAJID, & Dehghanian, Changiz. (2019). Synthesis of Nickel-Nickel oxide foam by electrochemical method and its application in supercapacitor. ADVANCED PROCESSES IN MATERIALS, 13(2 (49) ), 17-25. SID. https://sid.ir/paper/172642/en

    Vancouver: Copy

    MIRZAEE MAJID, Dehghanian Changiz. Synthesis of Nickel-Nickel oxide foam by electrochemical method and its application in supercapacitor. ADVANCED PROCESSES IN MATERIALS[Internet]. 2019;13(2 (49) ):17-25. Available from: https://sid.ir/paper/172642/en

    IEEE: Copy

    MAJID MIRZAEE, and Changiz Dehghanian, “Synthesis of Nickel-Nickel oxide foam by electrochemical method and its application in supercapacitor,” ADVANCED PROCESSES IN MATERIALS, vol. 13, no. 2 (49) , pp. 17–25, 2019, [Online]. Available: https://sid.ir/paper/172642/en

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