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An Oxide Single Crystal with High Thermoelectric Performance in Air

Japanese Journal of Applied Physics · 2000 · Vol. 39(11B) · pp. L1127–L1127
Ryoji FunahashiIchiro MatsubaraHiroshi IkutaTsunehiro TakeuchiUichiro MizutaniSatoshi Sodeoka

Abstract

An oxide single-crystalline whisker with high thermoelectric properties at temperatures ( T ) higher than 600 K in air has been discovered. This whisker is assigned to Ca 2 Co 2 O 5 phase (abbreviated to Co-225 whiskers) and has a layered structure in which Co–O layers of two different kinds alternate in the direction of the c -axis. Seebeck coefficient of the whiskers is higher than 100 µV·K -1 at 100 K and increases with temperature up to 210 µV·K -1 . Temperature dependence of electric resistivity shows a semiconducting-like behavior. These results indicate that the electric carriers are transported via hopping conduction. Using thermal conductivity of a Co-225 polycrystalline sample, figure of merit ( Z T ) of the Co-225 whiskers is estimated 1.2–2.7 at T ≥873 K. This compound is characterized with regard to low mobility and high density of carriers, which contradicts the conventional materials with high thermoelectric properties.

Advanced Thermoelectric Materials and DevicesThermal Expansion and Ionic ConductivityMagnetic and transport properties of perovskites and related materialsSeebeck coefficientWhiskersThermoelectric effectWhiskerMaterials scienceElectrical resistivity and conductivityCrystalliteFigure of meritSingle crystalOxide
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