Energy on-the-go: V2O5-pBOA-Graphene nanocomposite for wearable supercapacitor applications
Author:
Funder
King Saud University
Higher Education Commission Pakistan
Publisher
Elsevier BV
Reference27 articles.
1. Recent progress on flexible and wearable supercapacitors;Xue;Small.,2017
2. Energy storage in the 21st century: a comprehensive review on factors enhancing the next-generation supercapacitor mechanisms;Meena;J. Energy Storage,2023
3. Review on hybrid electro chemical energy storage techniques for electrical vehicles: technical insights on design, performance, energy management, operating issues & challenges;Jayaprabakar;J. Energy Storage,2023
4. Design considerations for unconventional electrochemical energy storage architectures;Vlad;Adv. Energy Mater.,2015
5. Battery-supercapacitor energy storage systems for electrical vehicles: a review;Lemian;Energ. (Basel),2022
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1. Unveiling the power of laser-modified black TiO2 nanospheres as efficient supercapacitor electrodes;Materials Letters;2024-10
2. Synergistic Effects and Characterization of CoMn2O4/Graphene in DSSC Counter Electrodes;Journal of Electronic Materials;2024-09-04
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