Університет Короля Данила

Highly porous activated carbon derived from plant raw material as high-performance anode for aqueous sodium-ion supercapacitors

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dc.contributor.author Boichuk, Tetiana
dc.contributor.author Boichuk, Andrii
dc.contributor.author Vashchynskyi, Vitalii
dc.contributor.author Changarath, Mahesh Eledath
dc.contributor.author Krecmarova, Marie
dc.contributor.author Abargues, Rafael
dc.contributor.author Martínez-Pastor, Juan P.
dc.contributor.author Sanchez-Royo, Juan F.
dc.date.accessioned 2026-03-12T09:10:38Z
dc.date.available 2026-03-12T09:10:38Z
dc.date.issued 2024
dc.identifier.citation Tetiana Boichuk , Andrii Boichuk , Vitalii Vashchynskyi , Mahesh Eledath Changarath , Marie Kreˇcmarov´a, Rafael Abargues, Juan P. Martínez-Pastor , Juan F. Sanchez-Royo. Highly porous activated carbon derived from plant raw material as high-performance anode for aqueous sodium-ion supercapacitors // Journal of Power Sources, 2024. Vol 622. Article 235356. Pp. 1-9: Fig.7, table 1. uk_UA
dc.identifier.issn https://doi.org/10.1016/j.jpowsour.2024.235356
dc.identifier.uri http://repository.ukd.edu.ua/xmlui/handle/123456789/2079
dc.description Tetiana Boichuk , Andrii Boichuk , Vitalii Vashchynskyi , Mahesh Eledath Changarath , Marie Kreˇcmarov´a, Rafael Abargues, Juan P. Martínez-Pastor , Juan F. Sanchez-Royo. Highly porous activated carbon derived from plant raw material as high-performance anode for aqueous sodium-ion supercapacitors // Journal of Power Sources, 2024. Vol 622. Article 235356. Pp. 1-9: Fig.7, table 1. uk_UA
dc.description.abstract High power sodium energy generation devices, such as symmetric and hybrid supercapacitors, have great potential for cheap and green post-lithium applications. However, it is imperative to obtain porous structures with large surfaces and optimized pore size to enhance the electrode sorption property and to ensure fast electrochemical reactions. In this work, we investigated the influence of KOH carbon activation conditions on the morphology, porosity, and electrochemical parameters in aqueous sodium electrolytes. Our activated carbon had a maximum surface area of 1556 m2/g and a notably high mesopore content, this varying from 5 to 19 % of the total pore area. Electrochemical parameters are not only influenced by the total number of pores, but also by the optimal ratio of meso and micro pores. It is shown that in the case of sodium-based electrolytes, mesopores provide good electrode-electrolyte contact, and the capacity is mainly provided by micropores. High operating values of activated carbon in sodium aqueous electrolytes (specific capacity about 78 F/g, energy density 11 W*h/kg and power density 470 W/kg) indicates that the optimal electrode materials for a high-power device are activated carbon with a high content of mesopores obtained by the ratio of C and KOH as 1:4. uk_UA
dc.language.iso en uk_UA
dc.publisher Elsevier BV uk_UA
dc.subject Sodium aqueous supercapacitors uk_UA
dc.subject activated carbon uk_UA
dc.subject Mesopores and micropores uk_UA
dc.subject Surface area uk_UA
dc.subject Adsorption uk_UA
dc.subject Capacity uk_UA
dc.title Highly porous activated carbon derived from plant raw material as high-performance anode for aqueous sodium-ion supercapacitors uk_UA
dc.title.alternative [Article] uk_UA
dc.type Article uk_UA


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