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Title: | Exploring the feasibility of a two-dimensional layered cobalt-based coordination polymer for supercapacitor applications: effect of electrolytic cations |
Authors: | Deka, Rakesh Rathi, Shashank Mobin, Shaikh M. |
Issue Date: | 2023 |
Publisher: | Royal Society of Chemistry |
Citation: | Sahoo, S., Pradhan, D. K., Kumari, S., Samantaray, K. S., Singh, C., Mishra, A., Rahaman, M. M., Behera, B., Kumar, A., Thomas, R., Rack, P. D., & Pradhan, D. K. (2023). Compositional induced structural phase transitions in (1 − x)(K0.5Na0.5)NbO3–x(Ba0.5Sr0.5)TiO3 ferroelectric solid solutions. Scientific Reports. Scopus. https://doi.org/10.1038/s41598-023-45713-z |
Abstract: | Coordination polymers have attracted much interest in energy-related applications due to their adaptable structures and unique photophysical and chemical properties. In this study, a coordination polymer, Co-CP, was synthesized using a mixed ligand strategy via a slow diffusion technique. Single-crystal X-ray diffraction studies confirmed the characteristic two-dimensional structure of Co-CP, and plate-like morphology was authenticated through SEM images. Co-CP facilitates ion transport and efficient charge transfer processes, making it an ideal active material for supercapacitor applications. The results from the electrochemical studies demonstrate excellent supercapacitor properties for Co-CP, exhibiting a specific capacitance of 1092 F g−1 at 1.5 A g−1 in 7 M NaOH. Furthermore, the kinetic effect of the electrolyte cation was also investigated in a two-electrode asymmetric supercapacitor (ASC) system by preparing three different gels (NaOH-PVA, KOH-PVA, and LiOH-PVA). Similar trends were observed for the ASC device, with the highest energy density of 17 W h Kg−1 at a power density of 1200 W Kg−1 in NaOH-PVA gel. Overall, the results suggest that Co-CP is a promising active material for supercapacitor applications, and the choice of electrolyte cation has a remarkable impact on the electrochemical performance of the device. This study provides valuable insights for the development and optimization of high-performance supercapacitors based on coordination polymers. © 2023 The Author(s). |
URI: | https://doi.org/10.1039/d3ya00378g https://dspace.iiti.ac.in/handle/123456789/12909 |
ISSN: | 2753-1457 |
Type of Material: | Journal Article |
Appears in Collections: | Department of Chemistry |
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