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The effect of Ni substitution on electrical and magnetic properties of Sol-Gel derived LaSrFe-Oxide charge ordering perovskites
Aghdam, R. M. (2009). The effect of Ni substitution on electrical and magnetic properties of Sol-Gel derived LaSrFe-Oxide charge ordering perovskites [Master thesis].
Flame spray synthesis of visible light active nanocrystalline bismuth oxide based photocatalysts
Akurati, K. K., Vital, A., Reifler, F., Ritter, A., & Graule, T. (2007). Flame spray synthesis of visible light active nanocrystalline bismuth oxide based photocatalysts. 2007 NSTI Nanotechnology Conference and Trade Show - NSTI Nanotech 2007, Technical Proceedings: Vol. 4. (pp. 173-176). Presented at the 2007 NSTI Nanotechnology Conference and Trade Show - NSTI Nanotech 2007. .
La<sub>0.5</sub>Sr<sub>0.5</sub>Fe<sub>1-y</sub>M<sub>y</sub>0<sub>3-</sub><sub>δ </sub>(M = Ti, Ta) perovskite oxides for oxygen separation membranes
Bayraktar, D. (2008). La0.5Sr0.5Fe1-yMy03-δ (M = Ti, Ta) perovskite oxides for oxygen separation membranes [Doctoral dissertation]. EPF Lausanne.
Novel characterization procedure for single piezoelectric fibers
Belloli, A., Heiber, J., Clemens, F., & Ermanni, P. (2007). Novel characterization procedure for single piezoelectric fibers. In Carleton University - 18th International Conference on Adaptive Structures and Technologies, ICAST 2007. 18th international conference on adaptive structures and technologies. ICAST 2007 (pp. 506-518). Cussan Associates.
Exploratory workshop on soft X-rays and electrochemical energy storage and converters
Beni, A., Braun, A., Huthwelker, T., & Van Bokhoven, J. (2013). Exploratory workshop on soft X-rays and electrochemical energy storage and converters. Synchrotron Radiation News, 26(5), 36-38. https://doi.org/10.1080/08940886.2013.832590
Colloidal technologies for heat energy recovery
Bevione, M., Cecchini, I., Garafalo, E., Suslov, S. A., & Chiolerio, A. (2023). Colloidal technologies for heat energy recovery. In D. Borge-Diez & E. Rosales-Asensio (Eds.), Green energy and technology. Heat energy recovery for industrial processes and wastes (pp. 49-104). https://doi.org/10.1007/978-3-031-24374-5_3
Oxidation and corrosion of silicon Nitride at 1200°C and 1500°C
Blugan, G., Wittig, D., Zinz, S., Graule, T., & Kuebler, J. (2008). Oxidation and corrosion of silicon Nitride at 1200°C and 1500°C. W. Pan & J. Gong (Eds.), Key engineering materials: Vol. 368-372. (pp. 885-887). Presented at the Fifth China international conference on high-performance ceramics (CICC-5). https://doi.org/10.4028/www.scientific.net/KEM.368-372.885
Soft X-ray spectroscopy in renewable energy generation and storage materials
Bluhm, H., Guo, J., Braun, A., & Heske, C. (2010). Soft X-ray spectroscopy in renewable energy generation and storage materials. Synchrotron Radiation News, 23(1), 12-13. https://doi.org/10.1080/08940880903547272
Solar Photoelectrochemical Water Splitting with Bioconjugate and Bio-Hybrid Electrodes
Bora, D. K., Braun, A., & Gajda-Schrantz, K. (2015). Solar Photoelectrochemical Water Splitting with Bioconjugate and Bio-Hybrid Electrodes. In E. A. Rozhkova & K. Ariga (Eds.), From molecules to materials: pathways to artificial photosynthesis (pp. 125-147). https://doi.org/10.1007/978-3-319-13800-8_5
Assessment of the electronic structure of solar water splitting photo-electrodes with X-ray and electron spectroscopy
Bora, D. K., & Braun, A. (2015). Assessment of the electronic structure of solar water splitting photo-electrodes with X-ray and electron spectroscopy. In E. A. Rozhkova & K. Ariga (Eds.), From molecules to materials: pathways to artificial photosynthesis (pp. 297-321). https://doi.org/10.1007/978-3-319-13800-8_11
Hematite and its hybrid nanostructures for photoelectrochemical water splitting: how do properties affect functionality?
Bora, D. K. (2012). Hematite and its hybrid nanostructures for photoelectrochemical water splitting: how do properties affect functionality? [Doctoral dissertation, Universität Basel]. https://doi.org/10.5451/unibas-005771744
Self-assembled photonic mesostructures for water splitting photoanodes
Boudoire, F. (2015). Self-assembled photonic mesostructures for water splitting photoanodes [Doctoral dissertation, University of Basel].
Electrochemical energy systems. Foundations, energy storage and conversion
Braun, A. (2019). Electrochemical energy systems. Foundations, energy storage and conversion. De Gruyter Textbook. https://doi.org/10.1515/9783110561838
Zwischen Photovoltaik und Photosynthese. <I>Solarer Wasserstoff aus Rost und Algen</I>
Braun, A. (2012). Zwischen Photovoltaik und Photosynthese. Solarer Wasserstoff aus Rost und Algen. Hzwei, Magazin für Wasserstoff und Brennstoffzellen, 12(4), 20-21.
In situ photoelectron spectroscopy
Braun, A. (2018). In situ photoelectron spectroscopy. In K. Wandelt (Ed.), Encyclopedia of interfacial chemistry: surface science and electrochemistry (pp. 264-279). https://doi.org/10.1016/B978-0-12-409547-2.13291-3
Photoelektroden für solaren Wasserstoff. Tricks und Kniffe von der Natur abgeschaut
Braun, A., & Boudoire, F. (2014). Photoelektroden für solaren Wasserstoff. Tricks und Kniffe von der Natur abgeschaut. Hzwei, Magazin für Wasserstoff und Brennstoffzellen, 14(10), 14-15.
Protonen auf die Sprünge helfen. Keramische Protonenleiter als Festelektrolyte für Mikro-BZ
Braun, A. (2015). Protonen auf die Sprünge helfen. Keramische Protonenleiter als Festelektrolyte für Mikro-BZ. Hzwei, Magazin für Wasserstoff und Brennstoffzellen, 15(4), 40-41.
International exploratory workshop on catalysis, photoelectrochemistry, and X-ray spectroscopy for renewable energy
Braun, A., Diale, M., Huthwelker, T., & van Bokhoven, J. A. (2016). International exploratory workshop on catalysis, photoelectrochemistry, and X-ray spectroscopy for renewable energy. Synchrotron Radiation News, 29(1), 14-16. https://doi.org/10.1080/08940886.2016.1124677
Von der Nordsee bis Venedig. Mit Wasserstoff und Brennstoffzelle Europa "erfahren". Eine "Auto"-Biographie.
Braun, A. (2019). Von der Nordsee bis Venedig. Mit Wasserstoff und Brennstoffzelle Europa "erfahren". Eine "Auto"-Biographie. sine loco: Dr. Artur Braun.
Solarer Wasserstoff und künstliche Photosynthese
Braun, A. (2012). Solarer Wasserstoff und künstliche Photosynthese. Swiss Engineering, 5, 20-21.
 

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