Fabrication of cobalt oxide@cellulose/nitrogen doped carbon nanotubes decorated metal organic frameworks composite for symmetric supercapacitor applications

Sivalingam Ramesh, Iqra Rabani, T. Indumathi, H. M. Yadav, Manickam Selvaraj, Kalathiparambil Rajendra Pai Sunajadevi, Young Soo Seo, Joo Hyung Kim, Heung Soo Kim

Research output: Contribution to journalArticlepeer-review

1 Scopus citations

Abstract

The two main issues facing the world's population now are energy storage needs and environmental protection. A lot of work has gone into creating electrochemical energy storage using chemical processes and a variety of possible electrode active materials. Supercapacitors, which are energy storage devices with a unique structure and morphology of cellulose materials for green energy resource. In this regard, solid state hydrothermal process is used to fabricate Co3O4@Cellulose (CE), Co3O4@CE/N-MWCNT, and Co3O4@CE/N-MWCNT/ZIF-67 composite materials. XRD, XPS, BET, and HR-TEM analyses verified the structural, surface, and morphological analysis. The electrochemical studies by a three- and two-electrode fabrication in presence of 1M KOH electrolyte for supercapacitor applications. When 1M KOH electrolyte is present, the fabricated Co3O4@CE/N-MWCNT/ZIF-67composite electrode displayed exceptional cyclic stability and a specific capacitance of ∼835 F g−1 at 1 A/g. The constructed composite electrodes of Co3O4, Co3O4@CE, and Co3O4@CE/N-MWCNT have specific capacitances of 263, 406, and 576 F g−1 at 1 A/g, respectively, which improves electrochemical properties using a three-electrode design. The Co3O4@CE-N-MWCNT/ZIF-67//1MKOH/SSC composite is produced using two electrode configurations. The final material showed a capacitance of 258 F g−1 at 1 A/g, a capacitance retention of 84.95 % across 8000 cycles, and an energy density of 30.99 W h kg−1 at a power density of 5409 W kg−1. Hence, the composite electrodes that have been produced have the potential to be used in electrochemical systems.

Original languageEnglish
Article number236288
JournalJournal of Power Sources
Volume631
DOIs
StatePublished - 1 Mar 2025

Bibliographical note

Publisher Copyright:
© 2025 Elsevier B.V.

Keywords

  • Cellulose (CE)
  • Cobalt oxides
  • Composite
  • Hydrothermal process
  • Nitrogen doped MWCNT
  • Symmetric supercapacitor (SSC)
  • Zeolite imidazole frame work (ZIF-67)

Fingerprint

Dive into the research topics of 'Fabrication of cobalt oxide@cellulose/nitrogen doped carbon nanotubes decorated metal organic frameworks composite for symmetric supercapacitor applications'. Together they form a unique fingerprint.

Cite this