Projects per year
Abstract
Phase change materials (PCMs) face a significant obstacle in practical applications and energy efficiency due to their inherently low thermal conductivity. One promising solution to this limitation involves integrating conductive polymers (CPs) into PCMs. This approach not only enhances thermal conductivity—critical for efficient energy storage and release—but also introduces electrical conductivity, enabling dual functionalities such as electrothermal conversion and rapid charging and discharging. Although CPs have been extensively utilized for this purpose, there is a noticeable gap in existing reviews that specifically focus on CP-enhanced PCMs. To address this gap, this comprehensive review examines experimental research aimed at improving the electrothermal characteristics of PCMs, with an emphasis on boosting conductivity and storage efficiency through CP incorporation. The review begins by providing an overview of the fundamental principles of electrical and thermal conduction in materials. It then explores commonly used CPs—such as polypyrrole, polyaniline, and poly(3,4-ethylenedioxythiophene) (PEDOT)—and their integration strategies with PCMs. The discussion highlights the unique properties of these polymers and their contributions to enhancing the thermal and electrical conductivity of PCMs. Additionally, it investigates the formation of conductive pathways and their role in amplifying the energy efficiency of nano-enhanced PCMs, comparing the effects of various nano-additives. The study further explores potential applications of CP-enhanced PCMs across diverse fields, including electronics, wearables, energy systems, and advanced thermally regulative materials. To provide a well-rounded perspective, the review outlines recent advancements, identifies current challenges and limitations, and highlights future research opportunities. By fostering a deeper understanding of the interplay between PCMs and CPs, this review contributes to the ongoing efforts to optimize thermal properties and multifunctionality, paving the way for innovative applications and improved energy solutions.
Original language | English |
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Article number | 160804 |
Number of pages | 22 |
Journal | Chemical Engineering Journal |
Volume | 508 |
DOIs | |
Publication status | Published - 15 Mar 2025 |
MoE publication type | A2 Review article, Literature review, Systematic review |
Keywords
- Conductive polymers
- Electrical conductivity
- Energy storage and conversion
- Phase change materials
- Thermal conductivity
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OptStorage/Seppälä: Experimental and Artificial-Intelligence-Based Modeling of Optimal Efficiency for Renewable Long-Term Heat Storages
Seppälä, A. (Principal investigator)
EU The Recovery and Resilience Facility (RRF), Suomen Akatemia
01/01/2023 → 31/12/2025
Project: Academy of Finland: Other research funding
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PCMI: PCM Insulation
Yazdani, R. (Principal investigator)
01/01/2023 → 30/06/2024
Project: Business Finland: New business from research ideas (TUTLI)
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Soma/Yazdani: Green engineering of sorption materials for seasonal thermal energy storage: Development, system implementation, and life cycle assessment
Yazdani, R. (Principal investigator)
01/09/2021 → 31/08/2024
Project: Academy of Finland: Other research funding