Dr. Turdimuhammad Abdullah
Peer-Reviewed Journal ArticleSCI-E / Scopus2021
24Verified Citations

“Effects of precursors and carbon nanotubes on electrochemical properties of electrospun nickel oxide nanofibers-based supercapacitors”

Authors & Investigators
Reziwanguli AihemaitituohetiNuha A AlhebshiTurdimuhammad Abdullah★

Abstract & Research Summary

Supercapacitors have been considered as one of the main energy storage devices. Recently, electrospun nanofibers have served as promising supercapacitor electrodes because of their high surface area, high porosity, flexibility, and resistance to aggregation. Here, we investigate the effects of electrospinning parameters and nickel precursors on the nanostructure of electrospun nickel oxide (NiO), as well as on their electrochemical performance as supercapacitor electrodes. In contrast to the case of using nickel nitrate, increasing the nickel acetate molar concentration maintains the flexible fibrous sheet morphology of the as-spun sample during the polycondensation and calcination of NiO. As a result, our flexible electrode of NiO nanofibers derived from nickel acetate (NiO-A) exhibits much better electrochemical performance values than that of nickel nitrate-derived NiO. To further improve the electrochemical storage performance, we combined NiO-A nanofibers with single-walled carbon nanotubes (CNTs) as a hybrid electrode. In both half-cell and full-cell configurations, the hybrid electrode displayed a higher and steadier areal capacitance than the NiO-A nanofibers because of the synergetic effect between the NiO-A nanofibers and CNTs. Altogether, this work demonstrates the potency of the hybrid electrodes combined with the electrospun NiO-A nanofibers and CNTs for supercapacitor applications.

Annual Citation Trajectory

24 total citations
Total citations:24
Peak year: 2023 (7 citations)
2022
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Cite This Publication

@article{aihemaitituoheti2021effectso,
  title = {Effects of precursors and carbon nanotubes on electrochemical properties of electrospun nickel oxide nanofibers-based supercapacitors},
  author = {Reziwanguli Aihemaitituoheti, Nuha A Alhebshi, Turdimuhammad Abdullah},
  journal = {Molecules 26 (18), 5656},
  volume = {26},
  number = {18},
  pages = {5656},
  year = {2021},
  publisher = {MDPI},
  doi = {10.3390/MOLECULES26185656},
  url = {https://doi.org/10.3390/MOLECULES26185656},
}

Bibliographic Metadata

Journal / ContainerMolecules 26 (18), 5656
PublisherMDPI
Volume26
Issue / No.18
Pages5656
Publication Date2021/9/17
Indexing TierSCI-E / Scopus
Read & Verify Official Records
Previous WorkBiodegradable core-shell fibrous scaffolds for controlled oxygen and drug release
Next WorkInjectable Lignin-co-Gelatin Cryogels with Antioxidant and Antibacterial Properties for Biomedical Applications

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