Boosting the thermoelectric performance of Ca3Co4O9 ceramics through optimized precursor powder particle size

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Abstract

Ca3Co4O9 (CCO349) is a promising p-type thermoelectric ceramic oxide with high thermoelectric power factor PF, and reasonable thermoelectric figure-of-merit zT. CCO349 bulk ceramics were prepared from precursor powders with average particle sizes d50 ranging from about 10 µm to 0.5 µm, and conventional sintering at 920 °C. Remarkably, ceramics made from powders with optimum d50 of 1 µm exhibit enhanced electrical conductivity σ⊥ and power factor PF⊥ of 11,100 S/m and 340 µW/m·K2 at 800 °C, respectively. The ceramics exhibit anisotropic microstructures with Lotgering factors larger than 0.9, and anisotropic thermoelectric properties: the electrical conductivity σ⊥ and power factor PF⊥ are higher by 90% and 110% as compared to σ‖ and PF‖ at 800 °C, respectively, and the zT⊥ reaches nearly 0.16 at 800 °C. Moreover, a transverse thermoelectric device was fabricated based on alternating layers of CCO349 and silver with a power output of 5 mW at ΔT = 190 K.

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Ibrahim, A. A. S., & Töpfer, J. (2025). Boosting the thermoelectric performance of Ca3Co4O9 ceramics through optimized precursor powder particle size. Journal of Materials Research, 40(12), 1773–1785. https://doi.org/10.1557/s43578-025-01610-x

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