Abstract

An isothermal section of the phase diagram for the system La---Pd---O at 1200 K has been established by equilibration of samples representing seventeen different compositions, and phase identification after quenching by optical and scanning electron microscopy (SEM), X-ray diffraction (XRD), and energy dispersive analysis of X-rays (EDX). The binary oxide PdO was not stable at 1200 K. Two ternary oxides $La_4PdO_7$ and $La_2Pd_2O_5$ were identified. Liquid alloys and the intermetallic compounds LaPd, $La_3Pd_4$ and $LaPd_3$, were found to be in equilibrium with $La_2O_3$. Based on the phase relations, two solid-state cells were designed to measure the Gibbs energies of formation of the two ternary oxides. An advanced version of the solid-state cell incorporating a buffer electrode was used for high temperature thermodynamic measurements. The function of the buffer electrode, placed between reference and working electrodes, was to absorb the electrochemical flux of the mobile species through the solid electrolyte caused by trace electronic conductivity. The buffer electrode prevented polarization of the measuring electrode and ensured accurate data. Yttria-stabilized zirconia was used as the solid electrolyte and pure oxygen gas at a pressure of 0.1 MPa as the reference electrode. Electromotive force (emf) measurements, conducted in the temperature range from 925 to 1400 K, indicated the presence of a third ternary oxide $La_2PdO_4$, stable below $1171(\pm5)$ K. Additional solid state cells were designed to study this compound. The standard Gibbs energy of formation of the interoxide compounds from their component binary oxides La2O3 and PdO can be represented by the following equations: $La_4PdO_7 : \bigtriangleup _{f(ox)} G ^0 [J mol ^{-1}] = -46 550 + 0.56T (\pm220),$ $La_2PdO_4 : \bigtriangleup _{f(ox)} G ^0 [J mol ^{-1}] = -42 000 + 2.19T (\pm160),$ $La_4Pd_2O_5 : \bigtriangleup _{f(ox)} G ^0 [J mol ^{-1}] = -73 990 + 1.33T (\pm310),$ Based on the thermodynamic information, chemical potential diagrams for the system La---Pd---O were developed.

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