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  • (-) Empa Authors = Weidenkaff, Anke
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Thermoelectric properties of EuTiO<sub>3</sub> and related materials
Sagarna Zudaire, L. S. (2014). Thermoelectric properties of EuTiO3 and related materials [Doctoral dissertation]. Universität Bern.
Perovskite-type LaTiO<sub>2</sub>N for visible-light driven photocatalytic and photoelectrochemical water splitting
Maegli, A. E. (2013). Perovskite-type LaTiO2N for visible-light driven photocatalytic and photoelectrochemical water splitting [Doctoral dissertation]. Universität Bern.
ZnO-based thermoelectric composite materials and thin films
Vogel-Schäuble, N. (2013). ZnO-based thermoelectric composite materials and thin films [Doctoral dissertation]. Universität Bern.
The state of palladium in Pd-substituted perovskite-type oxides and its influence on methane oxidation activity
Eyßler, A. (2011). The state of palladium in Pd-substituted perovskite-type oxides and its influence on methane oxidation activity [Doctoral dissertation]. Universität Bern.
Modelling of thermoelectric devices for electric power generation
Bitschi, A. (2009). Modelling of thermoelectric devices for electric power generation [Doctoral dissertation, ETH Zürich]. https://doi.org/10.3929/ethz-a-005936533
Synthesis, structure, microstructure, and thermoelectric properties of perovskite-type manganate phases
Bocher, L. (2009). Synthesis, structure, microstructure, and thermoelectric properties of perovskite-type manganate phases [Doctoral dissertation]. Universität Augsburg.
Anionic substitution in perovskite-type oxides
Logvinovich, D. (2008). Anionic substitution in perovskite-type oxides [Doctoral dissertation, Universität Augsburg].
Synthesis, structure and thermoelectric properties of cobaltate phases
Robert, R. (2007). Synthesis, structure and thermoelectric properties of cobaltate phases [Doctoral dissertation]. Universität Augsburg.
Rôle de la dégénérescence orbitalaire et de spin dans le pouvoir thermoélectrique d'oxydes métalliques
Klein, Y. (2006). Rôle de la dégénérescence orbitalaire et de spin dans le pouvoir thermoélectrique d'oxydes métalliques [Doctoral dissertation]. Université de Caen.