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Optimization of electrochemical performance for double network electrically conductive aerogel-based supercapacitor electrode

JOURNAL OF ELECTROANALYTICAL CHEMISTRY [2023]
Xinquan Zou, Peiyuan Li, Zhonghua Zhao, Yihao Wu, Deyi Ma, Yaoting Song, Jikui Wang
ABSTRACT

In order to improve the energy density and optimize the electrochemical performance of supercapacitors , a new double network calcium alginate/polyaniline (CA/PANI) aerogels were designed in this study, in which sodium alginate (SA) cross-linked by Ca 2+ was the first network and the phytic acid cross-linked PANI was the second network. Due to the strong hydrogen bonds between PANI and CA, and the ionic cross-linking between CA molecular chains, CA/PANI aerogels can form a stable porous network structure with excellent performance, such as high BET specific surface area (330 m 2 /g) and high conductivity (2.66 S/cm). The aerogel further used as a supercapacitor electrode showed enhanced capacitive performance (463 F/g at 0.5 A/g). After repeated 10,000 galvanostatic charge/discharge tests, more than 84% of the initial capacitance could be maintained, while the capacitance retention of PANI was only 45%. Therefore, this aerogel showed great potential as an electrode material for supercapacitors.

MATERIALS

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