Abstract
An enhanced thermal stability in thermoelectric Ca3Co4O9 thin films up to 550-°C in an oxygen rich environment was demonstrated by high-temperature electrical and X-ray diffraction measurements. In contrast to generally performed heating in helium gas, it is shown that an oxygen/helium mixture provides sufficient thermal contact, while preventing the previously disregarded formation of oxygen vacancies. Combining thermal cycling with electrical measurements proves to be a powerful tool to study the real intrinsic thermoelectric behaviour of oxide thin films at elevated temperatures.
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CITATION STYLE
Brinks, P., Van Nong, N., Pryds, N., Rijnders, G., & Huijben, M. (2015). High-temperature stability of thermoelectric Ca3Co4O9 thin films. Applied Physics Letters, 106(14). https://doi.org/10.1063/1.4917275
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