INVESTIGADORES
MOGNI Liliana Veronica
artículos
Título:
Effect of Pr-Doping on Structural, Electrical, Thermodynamic, and Mechanical Properties of BaCeO3-d as Proton Conductor.
Autor/es:
JUAN F. BASBUS; MARIO MORENO; A. CANEIRO; L. MOGNI
Revista:
JOURNAL OF THE ELECTROCHEMICAL SOCIETY
Editorial:
ELECTROCHEMICAL SOC INC
Referencias:
Año: 2014 vol. 161 p. 969 - 976
ISSN:
0013-4651
Resumen:
The effect of partial substitution of Ce by Pr ions in BaCe1−xPrxO3−δ (0 ≤ x ≤ 0.8) perovskite was studied to improve the proton conductor capability, including transport and mechanical properties, thermodynamic stability, CO2 tolerance and sintering.The stability under oxidizing and reducing (5% H2/Ar and 10% CO2/Ar) atmospheres was evaluated by thermogravimetry. The conductivity was studied by Electrical Impedance Spectroscopy (EIS) under wet (2% H2O) flow of 20% O2/Ar and 10% H2/Ar as a function of temperature between 100 and 600◦C. Themechanical stiffness and fracture load were measured by a Small Punch Testing(SPT) method at room temperature. It was found that the Pr doping improves the sintering capacity, and increases the conductivity. However, the stability under reducing and carbon dioxide atmospheres decreases. A correlation between electrical conductivity,CO2 tolerance, thermodynamic stability under reducing atmospheres and mechanical propertieswas found. Dense BaCe0.8Pr0.2O3−δ obtained at 1350◦C presents low porosity (5 ± 1%), an improvement of 30% in stiffness and 56% in fracture load, good stability under oxidizing and reducing atmosphere, slightly higher CO2 tolerance range and an increase of electrical conductivity respect to that of the un-doped compound.