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Cited 64 time in webofscience Cited 71 time in scopus
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Electrochemical behavior of CuO/rGO nanopellets for flexible supercapacitor, non-enzymatic glucose, and H2O2 sensing application

Authors
Lohar, G. M.Pore, O. C.Fulari, A., V
Issue Date
Jun-2021
Publisher
ELSEVIER SCI LTD
Keywords
Supercapacitor; Specific capacitance; Graphene oxide; Glucose sensor; Copper oxide
Citation
CERAMICS INTERNATIONAL, v.47, no.12, pp 16674 - 16687
Pages
14
Indexed
SCIE
SCOPUS
Journal Title
CERAMICS INTERNATIONAL
Volume
47
Number
12
Start Page
16674
End Page
16687
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/25770
DOI
10.1016/j.ceramint.2021.02.238
ISSN
0272-8842
1873-3956
Abstract
In the present article, graphene oxide (GO) sheets and monoclinic copper oxide (CuO) nanocrystals are connected with each other and result in the formation of CuO/rGO nanopellets, and these nanopellets synthesized using coprecipitation method. The nanopellet structured CuO/rGO composite on carbon cloth, which act as current collector exhibits specific capacitance of 188 F g-1 at a current density of 0.2 A g-1 and up to 96.3% capacity retention after 2000 charge-discharge cycles. It shows a maximum energy density of 7.32 Wh kg- 1 and power density of 53 W kg- 1. The glucose sensing characteristics of CuO/rGO nanopellet is investigated on carbon cloth and ITO substrate. It shows glucose sensitivity of 0.805 mA mM-1 cm-2 and 0.2982 mA mM-1 cm-2 for a bundle like structured CuO/rGO composite on carbon cloth and ITO substrate, respectively. Further H2O2 sensing is studied on ITO substrate, which manifests H2O2 sensitivity of 84.39 mu A mM-1 cm-2. The results indicate that nanopellet structured CuO/rGO composite could be a promising electrode material for supercapacitor, glucose, and H2O2 sensor.
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