Szczegóły publikacji

Opis bibliograficzny

Usefulness of gel-casting method in the fabrication of nonstoichiometric ${CaZrO_{3}}$ – based electrolytes for high temperature application / Magdalena DUDEK // Materials Research Bulletin ; ISSN 0025-5408. — 2009 — vol. 44 iss. 9, s. 1879–1888. — Bibliogr. s. 1887-1888, Abstr.


Autor


Słowa kluczowe

thermodynamic propertieselectrochemical measurementsceramicschemical synthesisionic conductivity

Dane bibliometryczne

ID BaDAP47243
Data dodania do BaDAP2009-10-06
DOI10.1016/j.materresbull.2009.05.008
Rok publikacji2009
Typ publikacjiartykuł w czasopiśmie
Otwarty dostęptak
Czasopismo/seriaMaterials Research Bulletin

Abstract

Hydrogels obtained from lower toxicity monomers of N-(hydroxymethyl)acrylamide and N,N'-methylenebisacrylamide were applied to form nonstoichiometric CaZrO3-based electrolytes. A coprecipitation-calcination method with ((NH4)(2)C2O4) in concentrated NH3 aqueous solution was used to synthesise CaZrO3 involving 51 mol.% CaO (CZ-51) powder. The gas-tight CaZrO3-based rods were prepared by the gel-casting method with 45 vol.% suspension and then sintered at 1500 degrees C-2 h. It was found that in low oxygen partial pressure, the nonstoichiometric CaZrO3 obtained by gel-casting method were pure oxide ion conductors. These samples exhibited comparable electrical conductivity values to isostatically compressed pellets starting from the same powder. The results of experiments on thermochemical stability of CZ-51 gel-cast shapes at high temperatures in air or gas mixtures involving 2-50 vol.% H-2, as well as the corrosion resistance in exhaust gases from a self-ignition engine were also presented and discussed. The thermal resistance of CaZrO3 obtained rods against molten nickel or iron was also examined. Based upon these investigations, it is evident that only in hydrogen-rich gas atmospheres can the stability of CaZrO3 shapes be limited due to the presence of CaO precipitation as a second phase. The nonstoichiometric CaZrO3 (CZ-51) gel-cast materials were also tested in solid galvanic cells, designed to study thermodynamic properties of oxide materials, important for SOFC and energy technology devices. In this way, the Gibbs energy of NiM2O4, M = Cr, Fe, at 650-1000 degrees C was determined. The CaZrO3 involving 51 mol.% CaO gel-cast sintered shapes seems to be promising solid electrolytes for electrochemical oxygen probes in control of metal processing and thermodynamic studies of materials important for the development of the energy industry. (C) 2009 Elsevier Ltd. All rights reserved.

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