Novel Binders for Aqueous Electrode Processing of Electrochemical Capacitors

This work studies the use of epoxy and polyurethane formulations as binders for the aqueous processing of activated carbon (AC) electrodes used as positive and negative electrodes in Electrochemical Double Layer Capacitors (EDLCs). The use of amine and carbodiimide as crosslinkers is also evaluated....

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Bibliographic Details
Published in:ChemSusChem p. e202401316
Main Authors: Arnaiz, Maria, Fernandez, Marcial, Suty, Antoine, Martin-Fuentes, Silvia, Carriazo, Daniel, Bouvet-Marchand, Agathe, Villaverde, Aitor, Morant-Miñana, María C
Format: Journal Article
Language:English
Published: Germany 18-10-2024
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Summary:This work studies the use of epoxy and polyurethane formulations as binders for the aqueous processing of activated carbon (AC) electrodes used as positive and negative electrodes in Electrochemical Double Layer Capacitors (EDLCs). The use of amine and carbodiimide as crosslinkers is also evaluated. The mechanical properties of those different binders have been investigated, looking towards aqueous processable and flexible electrodes. Microstructural analysis of the fabricated AC electrodes has been carried out to understand the pore-blocking effect exhibited by certain polymers. Furthermore, electrochemical characterization of all the systems has been performed by cyclic voltammetry, electrochemical impedance spectroscopy, and constant current charge/discharge measurements at different current densities. The obtained results show that polyurethane outperforms in terms of energy and power density the CMC:SBR reference system. Moreover, the studied polyurethanes maintain close to 100% of their initial capacitance after 2500 cycles under a current density of 5 A g-1 and a discharge time of 20 s.
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ISSN:1864-5631
1864-564X
1864-564X
DOI:10.1002/cssc.202401316