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Properties of B-site substituted {mathbf{La}}_{{0.5}} {mathbf{Sr}}_{{0.5}} {mathbf{FeO}}_{{3 - {mathbf{delta }}}} perovskites for application in oxygen separation membranes
Authors:Defne Bayraktar  Stefan Diethelm  Thomas Graule  Jan Van herle  Peter Holtappels
Affiliation:1. Empa, Swiss Federal Laboratories for Materials Testing and Research, Laboratory for High Performance Ceramics, Ueberlandstr. 129, CH-8600, Dübendorf, Switzerland
2. HT Ceramix SA, Av. Des Sports 26, CH-1400, Yverdon-les-Bains, Switzerland
3. Ecole Polytechnique Fédérale de Lausanne (EPFL), Laboratory for Industrial Energy Systems (LENI), STI, CH-1015, Lausanne, Switzerland
Abstract:Mixed ionic–electronic conducting $La_{0.5} Sr_{0.5} Fe_{1 - x} B_x O_{3 - delta } $ (B: Al, Cr, Zr, Ga, Ti, Sn, Ta, V, Mg, and In with x?=?0, 0.1, 0.2) perovskite materials were produced via solid-state synthesis. In order to study the effect of B-site substitution on the expansion behavior of these materials, their thermal expansion in air up to 900°C and isothermal expansion at the same temperature from air to Ar were measured by dilatometry. Ti and Ta were found to be the most effective substitutions in suppressing the isothermal expansion. The isothermal expansion at 900°C from air to Ar was reduced by 50% by substitution of 20% Ti or 10% Ta. Therefore, these compositions were further characterized by 4-probe total DC conductivity and permeation measurements under air/Ar gradient. The total conductivity of $La_{0.5} Sr_{0.5} FeO_{3 - delta } $ was decreased by more than one order of magnitude at low temperatures and from 430 S/cm, which is the maximum, to around 100 S/cm at 500°C with the addition of Ti and Ta. The normalized oxygen permeation of LSF at 900°C decreased from 0.18 to 0.05 μmol/cm2s and 0.07 μmol/cm2s with the substitution of 20% Ti and 10% Ta, respectively.
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