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A
Comparative Study on the Efficiency of Nickel Oxide/Polyaniline and
Cobalt(II,III) Oxide/Polyaniline toward Oxygen Reduction Reaction |
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DOI: 10.22607/IJACS.2023.1103008 |
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Research Article
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Nitish Kumar, Rudra Pratap Udgata, Kajal Tiwari, Kingshuk Dutta*,
D. Balamurugan |
ABSTRACT |
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Polyaniline (PANI) is a conducting polymer that has gained attention
as a matrix material for oxygen reduction reaction (ORR)
catalysts due to its high surface area, good electrical
conductivity, and stability. In this comparative study, the
electrochemical
properties of nickel oxide (NiO) and cobalt (II,III) oxide (Co3O4)
catalysts, both embedded in a PANI matrix, were investigated
and compared for ORR. The NiO and Co3O4 catalysts were synthesized
using a simple reduction method and embedded in
the PANI matrix through mechanical mixing. The synthesized catalysts
were characterized using X-ray diffraction, Fouriertransform
infrared spectroscopy, and ultraviolet (UV)-visible spectroscopy.
The electrochemical performance of the NiO/PANI
and Co3O4/PANI catalysts was evaluated using cyclic voltammetry and
electrochemical impedance spectroscopy. The results
showed that NiO/PANI catalyst possessed slightly higher activity
than the Co3O4/PANI catalyst. The stability of the catalysts
was also investigated from a cyclic voltammogram, where the
catalysts were cycled between −0.7 V and 1.5 V for 100 cycles.
The results showed that the NiO/PANI and Co3O4/PANI catalysts both
exhibited good stability. Overall, the comparative study
demonstrated that both NiO/PANI and Co3O4/PANI catalysts exhibited
good electrocatalytic activity and stability for ORR. The
study also showed that the PANI matrix provided stable and
conductive support for the catalysts. The results suggest that both
NiO and Co3O4, embedded in a PANI matrix, have the potential to be
used as low-cost and efficient catalysts for ORR. |
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Key words: Oxygen
reduction reaction, Electrocatalyst, Nickel oxide, Cobalt oxide,
Polyaniline |
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[Download Full Article
PDF] |
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Indian Journal of Advances in Chemical Science,
Volume: 11, Issue : 3, August 2023
ISSN No.: 2320-0898 (Print);
2320-0928 (Electronic) |
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Copyright © 2012
KROS Publications |
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