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Charge storage performance of a structurally flexible hybrid ionic liquid electrolyte
Luleå University of Technology, Department of Civil, Environmental and Natural Resources Engineering, Chemical Engineering.ORCID iD: 0000-0002-9953-8075
Luleå University of Technology, Department of Civil, Environmental and Natural Resources Engineering, Chemical Engineering.ORCID iD: 0000-0001-7514-8606
Luleå University of Technology, Department of Civil, Environmental and Natural Resources Engineering, Chemical Engineering.ORCID iD: 0000-0002-6810-1882
School of Materials Science and Engineering/Herbert Gleiter Institute of Nanoscience, Nanjing University of Science and Technology, Nanjing, China.
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2024 (English)In: Energy Storage, ISSN 2578-4862, article id e535Article in journal (Refereed) Published
Abstract [en]

The electrochemical and charge storage performance of a fluorine-free structurally flexible hybrid pyrrolidinium-based ionic liquid electrolyte (HILE) in a symmetric graphite-based supercapacitor is thoroughly investigated. The HILE revealed thermal decomposition at above 230°C, a glass transition (Tg) temperature of below −70°C, and ionic conductivity of 0.16 mS cm−1 at 30°C. The chemical and electrochemical properties are investigated using a systematic variable temperature 1H and 31P NMR spectroscopy and diffusometry, cyclic voltammetry (CV), electrochemical impedance spectroscopy (EIS), and galvanostatic charge-discharge (GCD). The supercapacitor demonstrated a notable specific capacitance of 186 F g−1 at a scan rate of 1 mV s−1 and a specific capacitance of 122 F g−1 at a current density of 0.5 A g−1. The maximum energy density of 48.8 Wh kg−1, a power density of 450 W kg−1 at a current density of 0.5 A g−1, and a potential window of 4 V were obtained. Altogether, this study demonstrates that the new HILE can be used in symmetric graphite-based supercapacitors over a wide potential window of 4 V and a temperature range from −20°C to 90°C. 

Place, publisher, year, edition, pages
John Wiley & Sons, 2024. article id e535
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Materials Chemistry Physical Chemistry
Research subject
Chemistry of Interfaces
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URN: urn:nbn:se:ltu:diva-103048DOI: 10.1002/est2.535ISI: 001109089200001Scopus ID: 2-s2.0-85177600157OAI: oai:DiVA.org:ltu-103048DiVA, id: diva2:1815213
Funder
European CommissionThe Kempe Foundations, JCK22-0045, SMK21-0013
Note

Validerad;2024;Nivå 1;2024-04-04 (signyg);

License full text: CC BY-NC-ND 4.0

Available from: 2023-11-28 Created: 2023-11-28 Last updated: 2024-12-06Bibliographically approved

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Tatrari, GauravBhowmick, SouravFilippov, AndreiShah, Faiz Ullah

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