Lactic Acid-Based Solvents for Sustainable EDLC Electrolytes

ORCID
0000-0002-5842-7600
Zugehörigkeit
CapTop S.r.l., 80023 Napoli, Italy, massimo.melchiorre@captop.it
Melchiorre, Massimo;
ORCID
0000-0002-2063-9050
Zugehörigkeit
Department of Chemical Science, University of Naples Federico II, 80138 Naples, Italy, roberto.esposito@unina.it
Esposito, Roberto;
ORCID
0000-0003-4489-7115
Zugehörigkeit
Department of Chemical Science, University of Naples Federico II, 80138 Naples, Italy, diserio@unina.it
Di Serio, Martino;
Zugehörigkeit
CapTop S.r.l., 80023 Napoli, Italy, abbate@captop.it
Abbate, Giancarlo;
ORCID
0000-0003-4395-3496
Zugehörigkeit
National Agency for New Technologies, Energy and Sustainable Economic Development (ENEA), 00044 Frascati, Italy, alessandro.lampasi@enea.it
Lampasi, Alessandro;
GND
106404932X
ORCID
0000-0002-2887-8312
Zugehörigkeit
Institute of Technical Chemistry and Environmental Chemistry, Center for Energy and Environmental Chemistry (CEEC Jena), Friedrich Schiller University Jena, 07743 Jena, Germany, andrea.balducci@uni-jena.de
Balducci, Andrea;
ORCID
0000-0003-1624-079X
Zugehörigkeit
Department of Chemical Science, University of Naples Federico II, 80138 Naples, Italy, ruffo@unina.it
Ruffo, Francesco

The most relevant electrolytes used in commercial electrical double layer capacitors (EDLCs) are based on non-aqueous solvents as acetonitrile (ACN) and propylene carbonate (PC). However, these solvents are synthesized from non-renewable fossil feedstocks, making it desirable to develop more sustainable alternatives. To address this issue, in this work lactic acid was used to synthesize a panel of substances with small structural variation. The investigated products belong to the chemical family of ketals, and among them the 5-methyl-1,3-dioxolan-4-one (LA-H,H) was found to be the most suitable to prepare electrolytic solutions. Therefore, LA-H,H was combined with triethylmethylammonium tetrafluoroborate (TEMABF4 ), and analyzed in symmetrical EDLC. This electrolyte was thoroughly characterized by cyclic voltammetry, galvanostatic cycles and electrochemical impedance spectroscopy (EIS), disclosing competitive performances compared to PC-based electrolyte. The EDLC with LA-H,H/TEMABF4 displayed a specific energy and power of 13.4 Whkg−1 and 22.5 kWkg−1 respectively, with an optimal cycling stability over 5000 cycles at different current densities.

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