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Polymer Derived Carbon Nanostructure Electrodes for Solid-State Supercapacitor

dc.contributor.authorMishra S.; Kumari S.; Harjwani J.; Mishra A.K.
dc.date.accessioned2025-05-23T11:23:14Z
dc.description.abstractTo resolve the energy storage challenges in portable electronic devices, flexible and solid-state supercapacitor are need of the hour. These devices are appealing as replacements to conventional lithium-ion batteries due to their high power density, long cycle life, chemical stability, and safety. We have synthesized sp2 hybridized porous carbon nanostructure using poly-paraphenylenediamine (PpPD) as a polymer and activated the prepared material via chemical activation for supercapacitor application. To the best of our knowledge, this is the first report on the demonstration of poly-paraphenylenediamine (PpPD) derived N-enriched porous activated carbon (PNAC) electrode with PVA/H2SO4 electrolyte for solid-state supercapacitor (SSC) device with high energy density and excellent cyclic stability. PNAC electrodes-based SSC electrochemical studies exhibit a high specific capacitance value of 39 F g-1 at 0.2 A g-1 current density. The solid-state supercapacitor attained energy density of 21.66 Wh kg-1 at power density of 199 W kg-1 and 0.2 A g-1 current density. The symmetric solid-state supercapacitor displays an outstanding cyclic stability up to 10,000 galvanostatic charge-discharge (GCD) cycles. High energy density and stability of the prepared device suggests it utility in portable energy storage application. © 2022 The Electrochemical Society ("ECS"). Published on behalf of ECS by IOP Publishing Limited. [DOI: 10.1149/2162-8777/ac62ed].
dc.identifier.doihttps://doi.org/10.1149/2162-8777/ac62ed
dc.identifier.urihttp://172.23.0.11:4000/handle/123456789/8790
dc.relation.ispartofseriesECS Journal of Solid State Science and Technology
dc.titlePolymer Derived Carbon Nanostructure Electrodes for Solid-State Supercapacitor

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