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NiFe2O4 / rGO nanocomposites produced by soft bubble assembly for energy storage and environmental remediation

journal contribution
posted on 2024-11-02, 19:44 authored by R. Tamilselvi, G. S. Lekshmi, Narayanasamy Padmanathan, V. Selvaraj, Olha Bazaka, I Levchenko, Katia Bazaka, M Mandhakini
Environmental concerns regarding the use of potentially harmful chemicals and fossil fuels stimulate research efforts on the multifunctional hybrid nanocomposites produced from biowastes via simple environmentally friendly processes. Such nanomaterials could help to combat the escalating environmental issues related to environmental remediation and energy storage, as a step to the renewable energy technology of the future. This work discusses the synthesis of novel nickel-based reduced graphene oxide (rGO) nanostructured composites with superior energy storage and photocatalytic properties. Using a facile hydrothermal method, rGO nanoflakes were synthesized from the negative value coconut coir biowaste and then decorated with functional NiO and NiFe2O4 nanoparticles to produce hierarchical functional nanocomposites. Benefiting from the synergies arising from the concomitant use of NiFe2O4 nanoparticles and rGO nanoflakes, the resultant nanocomposites yielded excellent specific capacitance of 599.9 F/g at current density of 1 Ag-1 and retention rate of 86.5% even after 2000 cycles. Moreover, the composite exhibited excellent efficiency of visible light driven photocatalytic degradation of 96.5%. Thus, our material is essentially multifunctional and importantly, it demonstrates quite pronounced electrochemical and photocatalytic activities when produced in a simple, single technological route. These findings confirm that the developed multifunctional nanostructured composite is a strong candidate material for energy and environmental remediation applications.

History

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  1. 1.
    DOI - Is published in 10.1016/j.renene.2021.07.088
  2. 2.
    ISSN - Is published in 09601481

Journal

Renewable Energy

Volume

181

Start page

1386

End page

1401

Total pages

16

Publisher

Elsevier

Place published

United Kingdom

Language

English

Copyright

© 2021 Elsevier Ltd. All rights reserved.

Former Identifier

2006115375

Esploro creation date

2022-11-04

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