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  • (-) Empa Laboratories = 501 Materials for Energy Conversion
  • (-) Publication Year = 2006 - 2019
  • (-) Keywords ≠ energy storage
  • (-) Keywords = strontium titanate
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Bandgap tuning in SrTi(N,O,F)<SUB>3</SUB> by anionic-lattice variation
Yoon, S., Maegli, A. E., Karvonen, L., Matam, S. K., Shkabko, A., Riegg, S., … Weidenkaff, A. (2013). Bandgap tuning in SrTi(N,O,F)3 by anionic-lattice variation. Journal of Solid State Chemistry, 206, 226-232. https://doi.org/10.1016/j.jssc.2013.08.001
On the chemical interaction of nanoscale lanthanum doped strontium titanates with common scandium and yttrium stabilized electrolyte materials
Burnat, D., Heel, A., Holzer, L., Otal, E., Kata, D., & Graule, T. (2012). On the chemical interaction of nanoscale lanthanum doped strontium titanates with common scandium and yttrium stabilized electrolyte materials. International Journal of Hydrogen Energy, 37(23), 18326-18341. https://doi.org/10.1016/j.ijhydene.2012.09.022
Pulsed laser deposition and characterisation of perovskite-type LaTiO<SUB>3−</SUB><I><SUB>x</SUB></I>N<I><SUB>x</SUB></I> thin films
Marozau, I., Shkabko, A., Döbeli, M., Lippert, T., Mallepell, M., Schneider, C. W., … Wokaun, A. (2011). Pulsed laser deposition and characterisation of perovskite-type LaTiO3−xNx thin films. Acta Materialia, 59(19), 7145-7154. https://doi.org/10.1016/j.actamat.2011.08.019
Optical properties of nitrogen-substituted strontium titanate thin films prepared by pulsed laser deposition
Marozau, I., Shkabko, A., Döbeli, M., Lippert, T., Logvinovich, D., Mallepell, M., … Wokaun, A. (2009). Optical properties of nitrogen-substituted strontium titanate thin films prepared by pulsed laser deposition. Materials, 2(3), 1388-1401. https://doi.org/10.3390/ma2031388
Pulsed laser deposition and characterization of nitrogen-substituted SrTiO<SUB>3</SUB> thin films
Marozau, I., Shkabko, A., Dinescu, G., Döbeli, M., Lippert, T., Logvinovich, D., … Wokaun, A. (2009). Pulsed laser deposition and characterization of nitrogen-substituted SrTiO3 thin films. Applied Surface Science, 255(10), 5252-5255. https://doi.org/10.1016/j.apsusc.2008.07.159