JOURNAL ARTICLE

PolyoxometalateIntegrated with Conducting PolymerNanocomposites for Supercapacitor and Biological Sensor Applications

Muhammed Anees Puniyanikkottil (21095195)Sib Sankar Mal (2233600)

Year: 2025 Journal:   OPAL (Open@LaTrobe) (La Trobe University)   Publisher: La Trobe University

Abstract

Nanostructured redox-active composite electrode materials have been developed for energy storage applications to address conventional carbon-based supercapacitor’s limited electrochemical performance. Polyoxometalates (POMs) and conducting polymers (CP) have significantly enhanced the pseudocapacitive activity of these electrode materials. In this study, we synthesized H4[PVW11O40xH2O (PVW11) and combined it with polypyrrole (PPy) and polyaniline (PAni) separately to improve energy performance and conduct electrochemical analysis. The PVW11–PPy outperformed the PVW11–PAni composite, achieving an energy density of 49.07 W h kg–1 and a specific capacitance of 405.16 F g–1. The supercapacitor cells showed a cyclic retention of 85.13% and 99.99% Coulombic efficiency after 6000 galvanostatic charge–discharge (GCD) cycles. The PVW11–PPy composite was fabricated into a supercapacitor device that powered a set of 10 LED bulbs for 2 min using an active mass of 76 mg. Additionally, the PVW11–PPy composite material was employed to sense glucose solutions with concentrations ranging from 0.04 to 0.4 mM, providing a sensitivity of 0.325 mA mM–1 cm–2, with limits of detection (LOD) and quantification (LOQ) of 0.381 mM and 1.270 mM, respectively.

Keywords:
Supercapacitor Polyaniline Conductive polymer Nanocomposite Capacitance Electrode Composite number

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Topics

Supercapacitor Materials and Fabrication
Physical Sciences →  Materials Science →  Electronic, Optical and Magnetic Materials
Polyoxometalates: Synthesis and Applications
Physical Sciences →  Materials Science →  Materials Chemistry
Conducting polymers and applications
Physical Sciences →  Materials Science →  Polymers and Plastics
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