Enhanced supercapacitive behavior by CuO@MnO2/carboxymethyl cellulose composites
- Authors
- Palem, Ramasubba Reddy; Ramesh, Sivalingam; Bathula, Chinna; Kakani, Vijay; Saratale, Ganesh D.; Yadav, Hemraj M.; Kim, Joo-Hyung; Kim, Heung Soo; Lee, Soo-Hong
- Issue Date
- 1-Oct-2021
- Publisher
- ELSEVIER SCI LTD
- Keywords
- Carboxymethyl cellulose; CuO@MnO2; Nanocomposite; Electrochemical property
- Citation
- CERAMICS INTERNATIONAL, v.47, no.19, pp 26738 - 26747
- Pages
- 10
- Indexed
- SCIE
SCOPUS
- Journal Title
- CERAMICS INTERNATIONAL
- Volume
- 47
- Number
- 19
- Start Page
- 26738
- End Page
- 26747
- URI
- https://scholarworks.dongguk.edu/handle/sw.dongguk/4315
- DOI
- 10.1016/j.ceramint.2021.06.081
- ISSN
- 0272-8842
1873-3956
- Abstract
- The exploration of biocompatible materials has received greater significance in the research area of energy storage tools. In the present work, a composite material consisting of carboxymethyl cellulose (CMC) with CuO@MnO2 is synthesized via thermal reduction protocol. The resulting composite material exhibited unique morphology and excellent electrochemical properties. The electrochemical properties were premeditated by CV, GCD, and spectral impedance analysis. Electrochemical analyses of the composite materials indicated the extraordinary specific capacitance in a three-electrode configuration. The composite displayed the value of similar to 414 F/g at a current density of 0.5 A g(-1) and the electrodes retaining 96.2% capacitance after 5000 cycles. Therefore, our study demonstrated the synergistic effect of CuO@MnO2 nanoparticles with porous CMC network structures show enhanced electrochemical properties in the presence of 3 M KOH as an electrolyte.
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- Appears in
Collections - College of Life Science and Biotechnology > Department of Food Science & Biotechnology > 1. Journal Articles
- College of Engineering > Department of Mechanical, Robotics and Energy Engineering > 1. Journal Articles
- College of Life Science and Biotechnology > Department of Biomedical Engineering > 1. Journal Articles

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