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September 10, 2025Polymers44 citationsOpen Access

Conductive Polymer Thin Films for Energy Storage and Conversion: Supercapacitors, Batteries, and Solar Cells

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RDRashid Dallaev

Key Points

  • Conductive polymer thin films show promise in enhancing energy storage performance in supercapacitors and batteries.
  • Key polymers like polyaniline, polypyrrole, and PEDOT are crucial for developing efficient energy solutions.
  • New fabrication methods improve the morphology and conductivity of polymer films, thereby boosting device efficiency.
  • Challenges such as interfacial compatibility and long-term durability need addressing for future advancements.

Abstract

Conductive polymer thin films have emerged as a versatile class of materials with immense potential in energy storage and conversion technologies due to their unique combination of electrical conductivity, mechanical flexibility, and tunable physicochemical properties. This review comprehensively explores the role of conductive polymer thin films in three critical energy applications: supercapacitors, batteries, and solar cells. The paper examines key polymers such as polyaniline (PANI), polypyrrole (PPy), and poly(3,4-ethylenedioxythiophene) (PEDOT), focusing on their synthesis techniques, structural modifications, and integration strategies to enhance device performance. Recent advances in film fabrication methods, including solution processing, electrochemical deposition, and layer-by-layer assembly, are discussed with regard to achieving optimized morphology, conductivity, and electrochemical stability. Furthermore, the review highlights current challenges such as scalability, long-term durability, and interfacial compatibility, while outlining future directions for the development of high-performance, sustainable energy systems based on conductive polymer thin films.

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Cite This Study

Rashid Dallaev (2025) studied this question.

synapsesocial.com/papers/68c1d80554b1d3bfb60faa78https://doi.org/10.3390/polym17172346
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