Development and evaluation of Zn2+ ions hybrid supercapacitor based on ZnxMnO2-CNTs cathode
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DOI: 10.1016/j.apenergy.2022.119730
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- José Luis Sampietro & Vicenç Puig & Ramon Costa-Castelló, 2019. "Optimal Sizing of Storage Elements for a Vehicle Based on Fuel Cells, Supercapacitors, and Batteries," Energies, MDPI, vol. 12(5), pages 1-27, March.
- Wentian Gu & Gleb Yushin, 2014. "Review of nanostructured carbon materials for electrochemical capacitor applications: advantages and limitations of activated carbon, carbide-derived carbon, zeolite-templated carbon, carbon aerogels,," Wiley Interdisciplinary Reviews: Energy and Environment, Wiley Blackwell, vol. 3(5), pages 424-473, September.
- Mauro Pasta & Colin D. Wessells & Robert A. Huggins & Yi Cui, 2012. "A high-rate and long cycle life aqueous electrolyte battery for grid-scale energy storage," Nature Communications, Nature, vol. 3(1), pages 1-7, January.
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- Sun, Miao & Wang, Yanan & Sunarso, Jaka & Meng, Xiuxia & Zhang, Weimin & Cao, Jun & Yang, Naitao, 2024. "Synthesis and characterization of two-faced brush-like MXene anchored NiCo-LDH electrode for high-performance supercapacitors," Applied Energy, Elsevier, vol. 361(C).
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Keywords
Electrochemical properties; Zn2+ ions hybrid supercapacitor; Aqueous liquid electrolyte; ZnxMnO2;All these keywords.
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