This paper aims to investigate the energy harvesting capabilities of two piezoelectric nanogenerators based on ceramic and polymeric nanofibers. The nanofibers are produced via electrospinning and assembled with the electrodes to fabricate flexible and wearable devices. The specimens are mechanically stressed at low frequencies and the piezo-current is used to charge a capacitor. The performances of the piezoelectric nanofibers are then compared with those of a commercial ceramic piezoelectric disk.

Selleri, G., Gasperini, L., Zanoni, M., Depalma, F., Gualandi, C., Fabiani, D. (2022). Characterization of piezoelectric nanofibers for energy harvesting applications. New York : Institute of Electrical and Electronics Engineers Inc. [10.1109/CEIDP55452.2022.9985262].

Characterization of piezoelectric nanofibers for energy harvesting applications

Selleri G.;Gasperini L.;Zanoni M.;Gualandi C.;Fabiani D.
2022

Abstract

This paper aims to investigate the energy harvesting capabilities of two piezoelectric nanogenerators based on ceramic and polymeric nanofibers. The nanofibers are produced via electrospinning and assembled with the electrodes to fabricate flexible and wearable devices. The specimens are mechanically stressed at low frequencies and the piezo-current is used to charge a capacitor. The performances of the piezoelectric nanofibers are then compared with those of a commercial ceramic piezoelectric disk.
2022
Annual Report - Conference on Electrical Insulation and Dielectric Phenomena, CEIDP
270
273
Selleri, G., Gasperini, L., Zanoni, M., Depalma, F., Gualandi, C., Fabiani, D. (2022). Characterization of piezoelectric nanofibers for energy harvesting applications. New York : Institute of Electrical and Electronics Engineers Inc. [10.1109/CEIDP55452.2022.9985262].
Selleri, G.; Gasperini, L.; Zanoni, M.; Depalma, F.; Gualandi, C.; Fabiani, D.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/918748
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