Supercapacitor performance of porous nickel cobaltite nanosheets
Author | Chen, Xin |
Author | Xie, Rui |
Author | Li, Hui |
Author | Jaber, F. |
Author | Musharavati, F. |
Author | Zalnezhad, E. |
Author | Bae, S. |
Author | Hui, K.S. |
Author | Hui, K.N. |
Available date | 2025-03-10T08:18:50Z |
Publication Date | 2020 |
Publication Name | Scientific Reports |
Resource | Scopus |
Identifier | http://dx.doi.org/10.1038/s41598-020-75946-1 |
ISSN | 20452322 |
Abstract | In this work, nickel cobaltite (NiCo2O4) nanosheets with a porous structure were fabricated on nickel foam as a working electrode for supercapacitor applications. The nanosheets were fabricated by electrochemical deposition of nickel–cobalt hydroxide on the nickel foam substrate at ambient temperature in a three-electrode cell followed by annealing at 300 °C to transform the coating into a porous NiCo2O4 nanosheet. Field emission scanning electron microscopy and transmission electron microscopy revealed a three-dimensional mesoporous structure, which facilitates ion transport and electronic conduction for fast redox reactions. For one cycle, the NiCo2O4 electrodeposited nickel foam has a high specific capacitance (1734.9 F g−1) at a current density (CD) of 2 A g−1. The electrode capacitance decreased by only approximately 12.7% after 3500 cycles at a CD of 30 A g−1. Moreover, a solid-state asymmetric supercapacitor (ASC) was built utilising the NiCo2O4 nanosheets, carbon nanotubes, and a polyvinyl alcohol-potassium hydroxide gel as the anode, cathode, and solid-state electrolyte, respectively. The ASC displayed great electrochemical properties with a 42.25 W h kg−1 energy density at a power density of 298.79 W kg−1. |
Sponsor | This work was supported by the National Research Foundation of Korea (NRF) grant funded by the Korea government (MSIT) (No. NRF-2020R1A4A1019074). This work was funded by the Science and Technology Development Fund, Macau SAR (File no. 0191/2017/A3, 0041/2019/A1, 0046/2019/AFJ, 0021/2019/AIR), University of Macau (File no. MYRG2017-00216-FST and MYRG2018-00192-IAPME). |
Language | en |
Publisher | Nature Research |
Subject | Nickel Cobaltite Nanosheets Supercapacitor Applications High Specific Capacitance Solid-State Asymmetric Supercapacitor Electrochemical Properties |
Type | Article |
Issue Number | 1 |
Volume Number | 10 |
Files in this item
This item appears in the following Collection(s)
-
Mechanical & Industrial Engineering [1454 items ]