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Double modulation pyrometry applied to radiatively heated surfaces with dynamic optical properties
Potamias, D., Alxneit, I., Koepf, E., & Wokaun, A. (2019). Double modulation pyrometry applied to radiatively heated surfaces with dynamic optical properties. Journal of Solar Energy Engineering, 141(1), 011003 (8 pp.). https://doi.org/10.1115/1.4040842
Potentials, costs and environmental assessment of electricity generation technologies. Final report in English with summaries in German and French
Bauer, C., Hirschberg, S., Bäuerle, Y., Biollaz, S., Calbry-Muzyka, A., Cox, B., … Tran, M. Q. (2017). Potentials, costs and environmental assessment of electricity generation technologies. Final report in English with summaries in German and French. Villigen PSI, Switzerland: Paul Scherrer Institut.
Zn-modified ceria as a redox material for thermochemical H<sub>2</sub>O and CO<sub>2</sub> splitting: Effect of a secondary ZnO phase on its thermochemical activity
Lin, F., Samson, V. A., Wismer, A. O., Grolimund, D., Alxneit, I., & Wokaun, A. (2016). Zn-modified ceria as a redox material for thermochemical H2O and CO2 splitting: Effect of a secondary ZnO phase on its thermochemical activity. CrystEngComm, 18(14), 2559-2569. https://doi.org/10.1039/c6ce00430j
Tomography-based heat and mass transfer characterization of reticulate porous ceramics for high-temperature processing
Haussener, S., Coray, P., Lipiński, W., Wyss, P., & Steinfeld, A. (2010). Tomography-based heat and mass transfer characterization of reticulate porous ceramics for high-temperature processing. Journal of Heat Transfer, 132(2), 1-9. https://doi.org/10.1115/1.4000226
Tomography-based heat and mass transfer characteization of reticulate porous ceramics for high-temperature processing
Haussener, S., Coray, P., Lipiński, W., Wyss, P., & Steinfeld, A. (2009). Tomography-based heat and mass transfer characteization of reticulate porous ceramics for high-temperature processing. In Vol. 1. Proceedings of the asme summer heat transfer conference 2009, ht2009. https://doi.org/10.1115/HT2009-88031
Electron hole-phonon interaction, correlation of structure, and conductivity in single crystal La<sub>0.9</sub>Sr<sub>0.1</sub>FeO<sub>3-<em>δ</em></sub>
Braun, A., Richter, J., Harvey, A. ., Erat, S., Infortuna, A., Frei, A., … Graule, T. (2008). Electron hole-phonon interaction, correlation of structure, and conductivity in single crystal La0.9Sr0.1FeO3-δ. Applied Physics Letters, 93(26), 262103 (3 pp.). https://doi.org/10.1063/1.3049614