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  • (-) Empa Laboratories = 501 Materials for Energy Conversion
  • (-) Publication Year = 2006 - 2019
  • (-) Keywords ≠ energy storage
  • (-) Journal ≠ Chemical Communications
  • (-) Empa Authors = Aguirre, Myriam H.
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Designing strontium titanate-based thermoelectrics: insight into defect chemistry mechanisms
Kovalevsky, A. V., Aguirre, M. H., Populoh, S., Patrício, S. G., Ferreira, N. M., Mikhalev, S. M., … Frade, J. R. (2017). Designing strontium titanate-based thermoelectrics: insight into defect chemistry mechanisms. Journal of Materials Chemistry A, 5(8), 3909-3922. https://doi.org/10.1039/C6TA09860F
Half-Heusler superlattices as model systems for nanostructured thermoelectrics
Komar, P., Jaeger, T., Euler, C., Angel, E. C., Kolb, U., Müller, M. M., … Jakob, G. (2016). Half-Heusler superlattices as model systems for nanostructured thermoelectrics. Physica Status Solidi A: Applications and Materials, 213(3), 732-738. https://doi.org/10.1002/pssa.201532445
Thermal conductivity of half-Heusler superlattices
Jaeger, T., Hołuj, P., Mix, C., Euler, C., Aguirre, M. H., Populoh, S., … Jakob, G. (2014). Thermal conductivity of half-Heusler superlattices. Semiconductor Science and Technology, 29(12), 124003 (5 pp.). https://doi.org/10.1088/0268-1242/29/12/124003
Synthesis, Crystal Structure, Electric and Magnetic Properties of LaVO<SUB>2.78</SUB>N<SUB>0.10</SUB>
Yoon, S., Maegli, A. E., Karvonen, L., Shkabko, A., Populoh, S., Gałązka, K., … Weidenkaff, A. (2014). Synthesis, Crystal Structure, Electric and Magnetic Properties of LaVO2.78N0.10. Zeitschrift für Anorganische und Allgemeine Chemie, 640(5), 797-804. https://doi.org/10.1002/zaac.201300593
Crystal growth and thermoelectric properties of CaMn<SUB>0.98</SUB>Nb<SUB>0.02</SUB>O<SUB>3−<I>δ</I></SUB>
Alfaruq, D. S., Aguirre, M. H., Otal, E. H., Populoh, S., Karvonen, L., Yoon, S., … Weidenkaff, A. (2013). Crystal growth and thermoelectric properties of CaMn0.98Nb0.02O3−δ. Journal of Crystal Growth, 377, 170-177. https://doi.org/10.1016/j.jcrysgro.2013.05.020
High-temperature thermoelectric properties of W-substituted CaMnO<small><sub>3</sub></small>
Alfaruq, D. S., Eilertsen, J., Thiel, P., Aguirre, M. H., Otal, E., Populoh, S., … Weidenkaff, A. (2013). High-temperature thermoelectric properties of W-substituted CaMnO3. In G. S. Nolas, Y. Grin, D. Johnson, & A. Thompson (Eds.), Materials research society symposium proceedings: Vol. 1490. Symposium B – thermoelectric materials research and device development for power conversion and refrigeration (pp. 3-8). https://doi.org/10.1557/opl.2013.85
Synchrotron high energy X-ray methods coupled to phase sensitive analysis to characterize aging of solid catalysts with enhanced sensitivity
Ferri, D., Newton, M. A., Di Michiel, M., Yoon, S., Chiarello, G. L., Marchionni, V., … Gieshoff, J. (2013). Synchrotron high energy X-ray methods coupled to phase sensitive analysis to characterize aging of solid catalysts with enhanced sensitivity. Physical Chemistry Chemical Physics, 15(22), 8629-8639. https://doi.org/10.1039/C3CP44638G
The impact of aging environment on the evolution of Al<SUB>2</SUB>O<SUB>3</SUB> supported Pt nanoparticles and their NO oxidation activity
Matam, S. K., Kondratenko, E. V., Aguirre, M. H., Hug, P., Rentsch, D., Winkler, A., … Ferri, D. (2013). The impact of aging environment on the evolution of Al2O3 supported Pt nanoparticles and their NO oxidation activity. Applied Catalysis B: Environmental, 129, 214-224. https://doi.org/10.1016/j.apcatb.2012.09.018
Surface deformations as a necessary requirement for resistance switching at the surface of SrTiO<SUB>3</SUB>:N
Shkabko, A., Aguirre, M. H., Kumar, A., Kim, Y., Jesse, S., Waser, R., … Weidenkaff, A. (2013). Surface deformations as a necessary requirement for resistance switching at the surface of SrTiO3:N. Nanotechnology, 24(47), 475701 (9 pp.). https://doi.org/10.1088/0957-4484/24/47/475701
Thermoelectric properties of CaMnO<sub>3</sub> films obtained by soft chemistry synthesis
Alfaruq, D. S., Otal, E. H., Aguirre, M. H., Populoh, S., & Weidenkaff, A. (2012). Thermoelectric properties of CaMnO3 films obtained by soft chemistry synthesis. Journal of Materials Research, 27(7), 985-990. https://doi.org/10.1557/jmr.2012.63
Why can TiAlCrSiYN-based adaptive coatings deliver exceptional performance under extreme frictional conditions?
Beake, B. D., Fox-Rabinovich, G. S., Losset, Y., Yamamoto, K., Agguire, M. H., Veldhuis, S. C., … Kovalev, A. I. (2012). Why can TiAlCrSiYN-based adaptive coatings deliver exceptional performance under extreme frictional conditions? Faraday Discussions, 156, 267-277. https://doi.org/10.1039/c2fd00131d
Hierarchical adaptive nanostructured PVD coatings for extreme tribological applications: the quest for nonequilibrium states and emergent behavior
Fox-Rabinovich, G. S., Yamamoto, K., Beake, B. D., Gershman, I. S., Kovalev, A. I., Veldhuis, S. C., … Endrino, J. L. (2012). Hierarchical adaptive nanostructured PVD coatings for extreme tribological applications: the quest for nonequilibrium states and emergent behavior. Science and Technology of Advanced Materials, 13(4), 043001 (26 pp.). https://doi.org/10.1088/1468-6996/13/4/043001
Mechanism of adaptability for the nano-structured TiAlCrSiYN-based hard physical vapor deposition coatings under extreme frictional conditions
Fox-Rabinovich, G. S., Endrino, J. L., Agguire, M. H., Beake, B. D., Veldhuis, S. C., Kovalev, A. I., … Rashkovskiy, A. (2012). Mechanism of adaptability for the nano-structured TiAlCrSiYN-based hard physical vapor deposition coatings under extreme frictional conditions. Journal of Applied Physics, 111(6), 064306 (12 pp.). https://doi.org/10.1063/1.3693032
Investigation of diesel ash particulate matter: a scanning electron microscope and transmission electron microscope study
Liati, A., Dimopoulos Eggenschwiler, P., Müller Gubler, E., Schreiber, D., & Aguirre, M. (2012). Investigation of diesel ash particulate matter: a scanning electron microscope and transmission electron microscope study. Atmospheric Environment, 49, 391-402. https://doi.org/10.1016/j.atmosenv.2011.10.035
Thermal and chemical aging of model three-way catalyst Pd/Al2O3 and its impact on the conversion of CNG vehicle exhaust
Matam, S. K., Otal, E. H., Aguirre, M. H., Winkler, A., Ulrich, A., Rentsch, D., … Ferri, D. (2012). Thermal and chemical aging of model three-way catalyst Pd/Al2O3 and its impact on the conversion of CNG vehicle exhaust. Catalysis Today, 184(1), 237-244. https://doi.org/10.1016/j.cattod.2011.09.030
High figure of merit in (Ti,Zr,Hf)NiSn half-Heusler alloys
Populoh, S., Aguirre, M. H., Brunko, O. C., Galazka, K., Lu, Y., & Weidenkaff, A. (2012). High figure of merit in (Ti,Zr,Hf)NiSn half-Heusler alloys. Scripta Materialia, 66(12), 1073-1076. https://doi.org/10.1016/j.scriptamat.2012.03.002
A morphology study on thermoelectric Al-substituted ZnO
Schäuble, N., Süess, B. E., Populoh, S., Weidenkaff, A., & Aguirre, M. H. (2012). A morphology study on thermoelectric Al-substituted ZnO. In K. M. Paraskevopoulos & E. Hatzikraniotis (Eds.), AIP conference proceedings: Vol. 1449. 9th European conference on thermoelectrics. ECT2011 (pp. 421-424). https://doi.org/10.1063/1.4731586
Influence of thermal aging phenomena on thermoelectric properties of Al-substituted ZnO
Vogel-Schäuble, N., Dujardin, R., Weidenkaff, A., & Aguirre, M. H. (2012). Influence of thermal aging phenomena on thermoelectric properties of Al-substituted ZnO. Journal of Electronic Materials, 41(6), 1606-1614. https://doi.org/10.1007/s11664-011-1851-2
Thermoelectric properties of nanostructured Al-substituted ZnO thin films
Vogel-Schäuble, N., Romanyuk, Y. E., Yoon, S., Saji, K. J., Populoh, S., Pokrant, S., … Weidenkaff, A. (2012). Thermoelectric properties of nanostructured Al-substituted ZnO thin films. Thin Solid Films, 520(23), 6869-6875. https://doi.org/10.1016/j.tsf.2012.07.046
Properties of flame sprayed Ce<SUB>0.8</SUB>Gd<SUB>0.2</SUB>O<SUB>1.9-</SUB><I><SUB>δ</SUB></I> electrolyte thin films
Karageorgakis, N. I., Heel, A., Rupp, J. L. M., Aguirre, M. H., Graule, T., & Gauckler, L. J. (2011). Properties of flame sprayed Ce0.8Gd0.2O1.9-δ electrolyte thin films. Advanced Functional Materials, 21(3), 532-539. https://doi.org/10.1002/adfm.201001622
 

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