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Porous NiMoO4-NrGO as a Battery-Like Electrode Material for Aqueous Hybrid Supercapacitors
Mid Sweden University, Faculty of Science, Technology and Media, Department of Engineering, Mathematics, and Science Education (2023-). Tarbiat Modares University, Tehran.ORCID iD: 0000-0002-3880-1028
Mid Sweden University, Faculty of Science, Technology and Media, Department of Engineering, Mathematics, and Science Education (2023-).ORCID iD: 0000-0002-4661-2921
Mid Sweden University, Faculty of Science, Technology and Media, Department of Engineering, Mathematics, and Science Education (2023-).ORCID iD: 0000-0002-4303-2585
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2023 (English)In: Journal of Composites Science, ISSN 2504-477X, Vol. 7, no 6, article id 217Article in journal (Refereed) Published
Abstract [en]

Recently, much research has investigated nanocomposites and their properties for the development of energy storage systems. Supercapacitor performance is usually enhanced by the use of porous electrode structures, which produce a larger surface area for reaction. In this work, a biocompatible polymer of starch medium was used to create the porous nanostructure. Two powders, i.e., Nickel molybdate/reduced graphene oxide (NiMoO4-rGO) and Nickel molybdate/nitrogen-doped reduced graphene oxide (NiMoO4-NrGO), were synthesized using the deposition method in a medium containing starch, nickel nitrate salts, sodium molybdate, and graphene oxide powder. In terms of electrochemical performance, the NiMoO4-NrGO electrode displayed a higher specific capacitance, i.e., 932 Fg−1 (466 Cg−1), than the NiMoO4-rGO electrode, i.e., 884 Fg−1 (442 Cg−1), at a current density of 1 Ag−1. In fact, graphene oxide sheets could lose more oxygen groups in the presence of ammonia, resulting in increased electrical conductivity. For the asymmetric supercapacitor of NiMoO4-NrGO//AC, the specific capacitance at 1 Ag−1, energy density, and power density were 101.2 Fg−1 (111.32 Cg−1), 17 Wh kg−1, and 174.4 kW kg−1, respectively. In addition, this supercapacitor material displayed a good cycling stability of over 82%.

Place, publisher, year, edition, pages
MDPI, 2023. Vol. 7, no 6, article id 217
Keywords [en]
porous nanostructure, deposition method, NiMoO4-rGO, biocompatible polymer, electrochemical performance, asymmetric supercapacitor of NiMoO4-NrGO//AC
National Category
Materials Chemistry
Identifiers
URN: urn:nbn:se:miun:diva-49017DOI: 10.3390/jcs7060217ISI: 001017262300001Scopus ID: 2-s2.0-85163397470OAI: oai:DiVA.org:miun-49017DiVA, id: diva2:1787825
Available from: 2023-08-15 Created: 2023-08-15 Last updated: 2023-08-15Bibliographically approved

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Arshadi Rastabi, ShahrzadRazaz, GhadirBlomquist, NicklasÖrtegren, JonasOlin, Håkan

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Arshadi Rastabi, ShahrzadRazaz, GhadirBlomquist, NicklasÖrtegren, JonasOlin, Håkan
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Department of Engineering, Mathematics, and Science Education (2023-)Department of Natural Science, Design, and Sustainable Development (2023-)
Materials Chemistry

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