abstract
Alkali niobates and tantalates are currently important lead-free functional oxides. The formation and decomposition energetics of potassium tantalum oxide compounds (K2O-Ta2O5) were measured by high-temperature oxide melt solution calorimetry. The enthalpies of formation from oxides of KTaO3 perovskite and defect pyrochlores with K/Ta ratio of less than 1 stoichiometry-K0.873Ta2.226O6, K1.128Ta2.175O6, and K1.291Ta2.142O6-were experimentally determined, and the values are (-203.63 +/- 2.92) kJmol(-1) for KTaO3 perovskite, and (-339.54 +/- 5.03) kJmol(-1), (-369.71 +/- 4.84) kJmol(-1), and (-364.78 +/- 4.24) kJmol(-1), respectively, for non-stoichiometric pyrochlores. That of stoichiometric defect K2Ta2O6 pyrochlore, by extrapolation, is (-409.87 +/- 6.89) kJmol(-1). Thus, the enthalpy of the stoichiometric pyrochlore and perovskite at K/Ta = 1 stoichiometry are equal in energy within experimental error. By providing data on the thermodynamic stability of each phase, this work supplies knowledge on the phase-formation process and phase stability within the K2O-Ta2O5 system, thus assisting in the synthesis of materials with reproducible properties based on controlled processing. Additionally, the relation of stoichiometric and non-stoichiometric pyrochlore with perovskite structure in potassium tantalum oxide system is discussed.
keywords
MICROWAVE DIELECTRIC-PROPERTIES; THIN-FILMS; HYDROTHERMAL SYNTHESIS; KTAO3; OXIDES; DEPOSITION; POWDERS; SYSTEM; SRTIO3
subject category
Chemistry
authors
Zlotnik, S; Sahu, SK; Navrotsky, A; Vilarinho, PM
our authors
acknowledgements
This work was funded by FEDER funds through Programa Operacional Factores de Competitividade (COMPETE) and national funds through the Fundacao para a Ciencia e Tecnologia (FCT) within the Project CICECO FCOMP-01-0124-FEDER-037271 (FCT PEst-C/CTM/LA0011/2013). S.Z. acknowledges financial support from the FCT (SFRH/BD/67023/2009). The calorimetric studies at UC Davis were supported by the U.S. Department of Energy (grant no. DE-FG02-05ER15667).