Issue 2, 2025

Enhanced electrochemical performance of a polyaniline-based supercapacitor by a bicontinuous microemulsion nanoreactor approach

Abstract

Polyaniline (PANI)-based supercapacitors suffer from environmental and mechanical instabilities. In this work, a novel bicontinuous microemulsion approach was developed to fabricate a unique nanofibre structure of polyaniline and its 3D-crosslinked network using crosslinking chemistry, which improved both the mechanical and electrochemical performance of a PANI-based supercapacitor. The polyaniline nanofibers and its 3D-crosslinked networks produced by bicontinuous nanoreactors were investigated using experimental tools, such as SEM, FTIR, BET, TGA and DSC. Electrochemical evaluations for the above polyaniline nanofibers and its 3D-crosslinked materials was performed via cyclic voltammetry and galvanostatic charge–discharge measurements. The result of this study demonstrated that the PANI nanofiber exhibited the highest specific capacitance of 280.4 F g−1 at a current density of 1 A g−1, while both PANI-based supercapacitors made of nanofibers and 3D-crosslinked materials retained good cycling stability of 98% during continuous redox cycling.

Graphical abstract: Enhanced electrochemical performance of a polyaniline-based supercapacitor by a bicontinuous microemulsion nanoreactor approach

Supplementary files

Article information

Article type
Paper
Submitted
13 Oct 2024
Accepted
18 Dec 2024
First published
14 Jan 2025
This article is Open Access
Creative Commons BY license

RSC Adv., 2025,15, 1205-1211

Enhanced electrochemical performance of a polyaniline-based supercapacitor by a bicontinuous microemulsion nanoreactor approach

Y. Yeszhan, S. Duisenbekov, D. Kurmangaliyeva, D. Kazhigitova, P. Askar, Y. Tileuberdi, A. Konarov, S. Adilov and N. Nuraje, RSC Adv., 2025, 15, 1205 DOI: 10.1039/D4RA07348G

This article is licensed under a Creative Commons Attribution 3.0 Unported Licence. You can use material from this article in other publications without requesting further permissions from the RSC, provided that the correct acknowledgement is given.

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