Facile development of carbon nanotube (CNT)-based flexible thermoelectric materials for energy-harvesting applications

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Abstract

In this study, we investigate the thermoelectric properties of functionalized multi-walled carbon nanotubes (F-MWCNTs) dispersed over a flexible substrate through a facile vacuum filtration route. To improve their interfacial adhesion and dispersion, F-MWCNTs underwent hot-pressing. The heat-treatment has improved the nanotubes' connections and subsequently reduced porosity as well, which results in an increasing electrical conductivity upon increasing temperature of hot-pressing. Thermoelectric power factor (PF) value was greatly increased upon simultaneous heating and pressing of the CNTs and a highest PF value of 3.17 μW m−1 K−2 at 398 K, has been achieved, which is about 400% higher than that of the as-deposited CNTs without hot pressing. The current study presents a prototype for CNT-based flexible thermoelectric devices which opens up an avenue for the deployment of CNTs into flexible electronics.

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Naeem, N., Butt, S., Sumayya, Afzal, Z., Waseem Akram, M., Irfan, M., … Farooq, M. U. (2025). Facile development of carbon nanotube (CNT)-based flexible thermoelectric materials for energy-harvesting applications. RSC Advances, 15(1), 569–578. https://doi.org/10.1039/d4ra02914c

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