Please use this identifier to cite or link to this item: http://hdl.handle.net/20.500.11960/3117
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dc.contributor.authorLabrincha, António-
dc.contributor.authorRamasamy, Devaraj-
dc.contributor.authorGomes, Eduarda-
dc.contributor.authorAbrantes, João-
dc.date.accessioned2023-01-16T15:01:57Z-
dc.date.available2023-01-16T15:01:57Z-
dc.date.issued2022-
dc.identifier.citationFerreira, A. A. L., Ramasamy, D., Gomes, E., & Abrantes, J. C. C. (2022). Optimization of low-grade tetragonal zirconia by praseodymium oxide additions. In I. Dincer, C. O. Çolpan, & M. A. Ezan (Eds.), Proceedings of WHEC-2022: 23rd World Hydrogen Energy Conference, June 26-30, 2022, Turkey (pp. 848-850). National Hydrogen Association. https://whecistanbul.org/pt_PT
dc.identifier.isbn978-625-00-0843-0-
dc.identifier.urihttp://hdl.handle.net/20.500.11960/3117-
dc.description.abstractZirconia-based materials are still the state of art electrolyte for high temperature electrochemical systems, and for non-electrochemical applications. Their purity is known to affect performance, thus requiring high-grade expensive precursors and additional concerns about contamination during high temperature processing and/or during long term applications at intermediate temperatures, as found for contamination by silica. Thus, the purpose of this work was to demonstrate the scavenging ability of praseodymium oxide to minimize or suppress the impact of contamination by silica. In the present work, one used TZP precursor powders from Tosoh and Innovnano. Starting materials of both powders contained significant fractions of monoclinic phase, coexisting with tetragonal zirconia, and yielded highly dense samples after sintering at 1450°C/2h. Praseodymium oxide and/or silicon oxide additions did not affect significantly the sintering behaviour. Additions of Pr and Si yielded co-existing tetragonal and cubic phases, as revealed by XRD and Rietveld refinements, with an impact on lattice parameters of the cubic phase. The electrical characterization showed the expected severe decrease in conductivity after the addition of silicon oxide addition and also showed that this negative impact is at least partially reverted by additions of praseodymium oxide.pt_PT
dc.language.isoengpt_PT
dc.publisherNational Hydrogen Associationpt_PT
dc.relationPTDC/CTM-CER/32036/2017pt_PT
dc.rightsopenAccesspt_PT
dc.subjectSolid electrolytept_PT
dc.subjectYttria-stabilized zirconiapt_PT
dc.subjectPraseodymium oxidept_PT
dc.subjectScavengingpt_PT
dc.subjectSilica impuritypt_PT
dc.titleOptimization of low-grade tetragonal zirconia by praseodymium oxide additionspt_PT
dc.typeconferenceObjectpt_PT
dc.date.updated2023-01-16T10:57:54Z-
dc.description.version6D12-6554-B318 | João Carlos Castro Abrantes-
dc.description.versioninfo:eu-repo/semantics/publishedVersion-
dc.identifier.slugcv-prod-3119102-
dc.peerreviewedyespt_PT
degois.publication.firstPage848pt_PT
degois.publication.lastPage850pt_PT
degois.publication.titleProceedings of WHEC-2022: 23rd World Hydrogen Energy Conferencept_PT
degois.publication.locationTurquiapt_PT
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