Materials & Energyarticle2026-08-22

Electrodeposited Bi2Te3-carbon black nanocomposites with enhanced thermoelectric and mechanical properties

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Abstract

Thermoelectric thin films based on bismuth telluride (Bi 2 Te 3 ) are widely used for room temperature energy harvesting, but improving electrical, thermal, and mechanical properties simultaneously remains challenging. In this study, Bi 2 Te 3 -carbon black nanoparticle nanocomposite films were synthesized by electrodeposition and then systematically characterized. Porous carbon black nanoparticle incorporation increased electrical conductivity to 1,418 S cm −1 , more than double that of pristine Bi 2 Te 3 , while maintaining competitive Seebeck coefficients, leading to a 15% enhancement in power factor. Thermal conductivity decreased by over 50% due to the enhanced phonon scattering from nanoparticle interfaces and reduced grain size, resulting in a more than 3-fold increase in figure of merit. In addition, the films exhibited improved micromechanical properties, with hardness and elastic modulus increasing by approximately 1.25 and 2 times, respectively. These results demonstrate a scalable strategy to develop mechanically robust, high-performance thermoelectric films for microscale waste-heat energy harvesting.

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Authors: Khairul Fadzli Samat, Muhammad Afiff Alias, M Azman, Mohd Hafiz Jali, Nguyen Van Toan, Takahito Ono

Institutions: Tohoku University, Technical University of Malaysia Malacca