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The influence of constrictivity on the effective transport properties of porous layers in electrolysis and fuel cells
Holzer, L., Wiedenmann, D., Münch, D., Keller, L., Prestat, M., Gasser, P., … Grobéty, B. (2013). The influence of constrictivity on the effective transport properties of porous layers in electrolysis and fuel cells. Journal of Materials Science, 48(7), 2934-2952. https://doi.org/10.1007/s10853-012-6968-z
Three-dimensional pore structure and ion conductivity of porous ceramic diaphragms
Wiedenmann, D., Keller, L., Holzer, L., Stojadinović, J., Münch, B., Suarez, L., … Grobéty, B. (2013). Three-dimensional pore structure and ion conductivity of porous ceramic diaphragms. AICHE Journal, 59(5), 1446-1457. https://doi.org/10.1002/aic.14094
Reticulated macroporous ceramic foam supported TiO<SUB>2</SUB> for photocatalytic applications
Plesch, G., Gorbár, M., Vogt, U. F., Jesenák, K., & Vargová, M. (2009). Reticulated macroporous ceramic foam supported TiO2 for photocatalytic applications. Materials Letters, 63(3-4), 461-463. https://doi.org/10.1016/j.matlet.2008.11.008
Influence of A-site variation and B-site substitution on the physical properties of (La,Sr)FeO<SUB>3</SUB> based perovskites
Vogt, U. F., Holtappels, P., Sfeir, J., Richter, J., Duval, S., Wiedenmann, D., & Züttel, A. (2009). Influence of A-site variation and B-site substitution on the physical properties of (La,Sr)FeO3 based perovskites. Fuel Cells, 9(6), 899-906. https://doi.org/10.1002/fuce.200800116
B-site substituted lanthanum strontium ferrites as electrode materials for electrochemical applications
Vogt, U. F., Sfeir, J., Richter, J., Soltmann, C., & Holtappels, P. (2008). B-site substituted lanthanum strontium ferrites as electrode materials for electrochemical applications. Pure and Applied Chemistry, 80(11), 2543-2552. https://doi.org/10.1351/pac200880112543