Published 2022 | Version v2
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Optical, electrochemical and corrosion resistance properties of iron oxide/reduced graphene oxide/polyvinylpyrrolidone nanocomposite as supercapacitor electrode material

  • 1. Department of Physics, National Institute of Technology Manipur, Imphal 795004 (India)
  • 2. UGC DAE CSR, Indore, Devi Ahalya University, Indore 452017 (India)
  • 3. Department of Materials Science and Engineering, Kookmin University, Seoul 136-702 (Korea, Democratic People's Republic of)

Description

Iron oxide (Fe3O4)/reduced graphene oxide (rGO)/polyvinylpyrrolidone (PVP) nanocomposite films with varying iron weight percentages were prepared by electrospinning spray method on glass, aluminium foil and Si (100) substrate. The size of Fe3O4/rGO/PVP composite particles varied between 0.75 and 1.35 lm on the surface of the graphene sheet. The diffraction peaks at 36.77°, 47.06°, 52.98° and 61.34° confirmed the plane (311), (400), (422) and (440) of the Fe3O4 crystal lattice, respectively. The broad peaks around 26.6° and 43.47° correspond to the planes (002) and (102) for the rGO sheet in the Fe3O4 /rGO/PVP nanocomposite films. The defect parameter, ID/IG ratio varied from 0.17 to 0.34 with 15 and 25wt% Fe3O4 content, respectively, indicates the decreasing of defects in the Fe3O4 /rGO/PVP network. The minimum value of Ecorr and Icorr are 0.18 V and 4.76 lA, respectively. (author)

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Publishing Information

Journal Title
Bulletin of Materials Science
Journal Volume
45
Series
Article ID 122
Journal Page Range
[11 p.]
CODEN
BUMSDW

INIS