Synergistic cerium oxalate decahydrate-polyaniline nanocomposite fabricated by facile hydrothermal method for high performance supercapacitors

Composites based on rare earth compounds and conducting polymers are widely explored in the field of supercapacitors due to their high pseudocapacitive contribution. In this work, cerium oxalate decahydrate-polyaniline (CeOX–PANI) composite was synthesized by integrating polyaniline (PANI) into cerium oxalate decahydrate (CeOX) to investigate the influences of PANI incorporation in the structural, morphological and electrochemical behavior of the material compared to the parent materials. Electrochemical evaluations were carried out in a potential window of −0.25 to 0.4 V and showed a capacitance ~980 F/g at 1 A/g. Comprehensive analysis confirms the excellent electrochemical characteristics of the composite in both half-cell and full-cell configurations. The assembled asymmetric supercapacitor delivered ~352 F/g and an energy density of ~95 Wh/kg at 1 A/g over a voltage window of 0–1.4 V. This demonstrates that the CeOX–PANI composite electrode has strong potential for advanced supercapacitor devices.

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Publication Details

Journal
Journal of Energy Storage
Published
2026-10-09
DOI
https://doi.org/10.1016/j.est.2026.125001
Primary Topic
Supercapacitor Materials and Fabrication
Type
article
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article

Synergistic cerium oxalate decahydrate-polyaniline nanocomposite fabricated by facile hydrothermal method for high performance supercapacitors

Ditty Dixon, Jifi Jose, Ann V. Lizbathu, Neekha Deen Abraham et al.
Journal of Energy Storage
Supercapacitor Materials and Fabrication
article

Synergistic cerium oxalate decahydrate-polyaniline nanocomposite fabricated by facile hydrothermal method for high performance supercapacitors

Ditty Dixon, Jifi Jose, Ann V. Lizbathu, Neekha Deen Abraham, Sajan Thomas, Cyriac Joseph, P.R. Biju
article en

Abstract

Composites based on rare earth compounds and conducting polymers are widely explored in the field of supercapacitors due to their high pseudocapacitive contribution. In this work, cerium oxalate decahydrate-polyaniline (CeOX–PANI) composite was synthesized by integrating polyaniline (PANI) into cerium oxalate decahydrate (CeOX) to investigate the influences of PANI incorporation in the structural, morphological and electrochemical behavior of the material compared to the parent materials. Electrochemical evaluations were carried out in a potential window of −0.25 to 0.4 V and showed a capacitance ~980 F/g at 1 A/g. Comprehensive analysis confirms the excellent electrochemical characteristics of the composite in both half-cell and full-cell configurations. The assembled asymmetric supercapacitor delivered ~352 F/g and an energy density of ~95 Wh/kg at 1 A/g over a voltage window of 0–1.4 V. This demonstrates that the CeOX–PANI composite electrode has strong potential for advanced supercapacitor devices.

Journal of Energy StorageVol. 182
Mahatma Gandhi University (IN)
Openalex Percentile: Top 32%
Supercapacitor Materials and Fabrication
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Synergistic cerium oxalate decahydrate-polyaniline nanocomposite fabricated by facile hydrothermal method for high performance supercapacitors — Ditty Dixon, Jifi Jose, et al. · Journal of Energy Storage (2026) | TGRS Research Map | TGRS