[ES] En este trabajo se investigan métodos existentes y nuevos de medición de propiedades termoeléctricas (conductividades térmica y eléctrica, coeficientes de Seebeck y Hall) para geometrías bidimensionales tipo película. ...[+]
[ES] En este trabajo se investigan métodos existentes y nuevos de medición de propiedades termoeléctricas (conductividades térmica y eléctrica, coeficientes de Seebeck y Hall) para geometrías bidimensionales tipo película. Estas propiedades son imprescindibles para un correcto diseño de aparatos sofisticados, como sensores y actuadores o generadores de electricidad en satélites.
Cada uno de los casos de estudio se analiza con el programa de investigación basado en elementos finitos FEAP, procedente de la Universidad de California en Berkeley. De entre los casos más sencillos, usados como validación, se aportan y se comparan soluciones analíticas y/o experimentales. Sobre las simulaciones más avanzadas, se realizan estudios paramédicos y se extraen conclusiones para mejorar los métodos de ensayo de laboratorio.
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[EN] In this work, physical properties of thermoelectric materials are investigated. For the performance enhancement of these materials, state-of-the-art techniques are reviewed.
An accurate estimation of the properties ...[+]
[EN] In this work, physical properties of thermoelectric materials are investigated. For the performance enhancement of these materials, state-of-the-art techniques are reviewed.
An accurate estimation of the properties of thin films is important for the correct material
selection for further applications. Methods such as Direct and Alternate Current applied to
the Hall bars and Van der Pauw geometries are investigated for measurements of electrical
conductivity and Hall coefficient. These methods were simulated with the finite element method
software F EAP. The analysis of the most common errors and the influence of the magnetic
field on thermoelectric properties are provided. Finally, an experiment from recent research
technique for Seebeck and Hall coefficients estimation was repeated with F EAP simulation. It
is important to mention that prior to the study of the material characterization, validation of
the galvanomagnetic effect is carried out by comparing the analytical and the F EAP results.
Throughout the work the graphical post-processing and figures are done with GNUPlot and
Adobe Illustrator®. All the calculations are done with M athematica® and M atlab®.
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