One‐step preparation of binder‐free nickel‐containing graphene foam electrode for supercapacitors

Author:

Siyahjani Gultekin Sirin12ORCID,Karimi Aziz Ahmad23,Can Mustafa45,Demic Serafettin35

Affiliation:

1. Department of Chemical Engineering, Faculty of Engineering Canakkale Onsekiz Mart University Canakkale Turkey

2. Ege University Solar Energy Institute Bornova Turkey

3. Department of Materials Science and Engineering Izmir Katip Celebi University Izmir Turkey

4. Department of Engineering Science Faculty of Engineering and Architecture, Izmir Katip Celebi University Izmir Turkey

5. Graphene Application & Research Center Izmir Katip Celebi University Izmir Turkey

Abstract

AbstractIn this study, a nickel hydroxide (Ni(OH)2)‐modified reduced graphene oxide (rGO) foam electrode for supercapacitor application is presented. The electrode was prepared without using a binder through a one‐step process with three different ratios (NirGO1, NirGO2, and NirGo3). To compare the supercapacitor performance of the obtained graphene foam electrodes, rGO and rGO:carbon black (CB) standard electrodes with PVDF‐HFP binder were also prepared. All electrodes were then characterized structurally (XPS, EDS, RAMAN, XRD, and FT‐IR) and morphologically (SEM). Structural characterizations demonstrated that the Ni‐containing electrodes were in α‐Ni(OH)2:rGO structure. In addition, NirGO3 exhibited a specific capacitance of 800 F g−1 which is relatively the highest performance between the foam electrodes, while rGO:CB presented a specific capacitance of 900 F g−1. The results demonstrated that with the method proposed for electrode development, it was possible to obtain comparable results with the standard electrode rGO:CB.

Publisher

Wiley

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