Herein, we developed a nanostructured Co3O4 and bio-inspired carbon (BIC) composite by a facile hydrothermal reaction as a supercapacitor electrode material. Microstructural analysis revealed that the BIC-Co3O4 composites possessed the hierarchical structure with a microflower shape consisting of thin nano-petals. Due to its characteristic nanostructure, the BIC-Co3O4 electrode exhibited a high specific capacitance of 473 F/g at a current density of 1 A/g. Moreover, the all-solid-state symmetric device with this electrode delivered the energy density of 17 Wh/kg at a power density of 184 W/kg with remarkable cycling stability over 10,000 cycles. (C) 2019 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights reserved.
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Vivekanandha Coll Arts & Sci Women, Dept Phys, Namakkal 637205, Tamil Nadu, IndiaVivekanandha Coll Arts & Sci Women, Dept Phys, Namakkal 637205, Tamil Nadu, India
Gopalakrishnan, M.
Srikesh, G.
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Karunya Univ, Dept Chem, Mat Electrochem Lab, Coimbatore 641114, Tamil Nadu, IndiaVivekanandha Coll Arts & Sci Women, Dept Phys, Namakkal 637205, Tamil Nadu, India
Srikesh, G.
Mohan, A.
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Karunya Univ, Dept Phys, Thin Film Lab, Coimbatore 641114, Tamil Nadu, IndiaVivekanandha Coll Arts & Sci Women, Dept Phys, Namakkal 637205, Tamil Nadu, India
Mohan, A.
Arivazhagan, V
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Univ Bergen, Dept Phys & Technol, Bergen, NorwayVivekanandha Coll Arts & Sci Women, Dept Phys, Namakkal 637205, Tamil Nadu, India
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Bahir Dar Univ, Bahir Dar Inst Technol, Bahir Dar Energy Ctr, POB 26, Bahir Dar, Ethiopia
Bahir Dar Univ, Bahir Dar Inst Technol, Fac Chem & Food Engn, POB 26, Bahir Dar, EthiopiaBahir Dar Univ, Bahir Dar Inst Technol, Bahir Dar Energy Ctr, POB 26, Bahir Dar, Ethiopia