In this work new energy storage components were prepared depositing films made of polyaniline (PANI) modified with gold/magnetite nanoparticles on flexible graphite foils. Three types of composite materials termed PANI/FeO, PANI/Au/FeO and PANI/Au/FeO@Yne (where @Yne is a propynylcarbamate group) were obtained by electrosynthesis. Galvanostatic charge-discharge (CD) and impedance tests (EIS) were performed to verify their efficiency in charge storage properties: for the gold-containing electrodes PANI/Au/FeO and PANI/Au/FeO@Yne areal capacities values of 45.6 and 46.5 mAh cm were found in 0.5 M HSO + 0.1 M LiClO electrolyte solution at a current density of 0.5 mA cm. These values are twofold higher than those found for PANI/FeO electrodes and fourfold greater than those for PANI alone (11.0 mAh cm). In turn PANI/Au/FeO and PANI/Au/FeO@Yne were employed to assemble gel-state symmetric devices. CD, EIS and longtime resistance tests were made on the new devices that displayed an areal capacities of 100.0 mAh cm for PANI/Au/FeO and 73.6 mAh cm PANI/Au/FeO@Yne respectively. To our knowledge this is the first time that AuNP-modified magnetite nanoparticles are used in energy storage devices preparation.
PANI/Au/Fe3O4 nanocomposite materials for high performance energy storage
Sangiorgi N;Sanson A;
2019
Abstract
In this work new energy storage components were prepared depositing films made of polyaniline (PANI) modified with gold/magnetite nanoparticles on flexible graphite foils. Three types of composite materials termed PANI/FeO, PANI/Au/FeO and PANI/Au/FeO@Yne (where @Yne is a propynylcarbamate group) were obtained by electrosynthesis. Galvanostatic charge-discharge (CD) and impedance tests (EIS) were performed to verify their efficiency in charge storage properties: for the gold-containing electrodes PANI/Au/FeO and PANI/Au/FeO@Yne areal capacities values of 45.6 and 46.5 mAh cm were found in 0.5 M HSO + 0.1 M LiClO electrolyte solution at a current density of 0.5 mA cm. These values are twofold higher than those found for PANI/FeO electrodes and fourfold greater than those for PANI alone (11.0 mAh cm). In turn PANI/Au/FeO and PANI/Au/FeO@Yne were employed to assemble gel-state symmetric devices. CD, EIS and longtime resistance tests were made on the new devices that displayed an areal capacities of 100.0 mAh cm for PANI/Au/FeO and 73.6 mAh cm PANI/Au/FeO@Yne respectively. To our knowledge this is the first time that AuNP-modified magnetite nanoparticles are used in energy storage devices preparation.I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.