Understanding the structure and reactivity of solid state electrolyte model systems

dc.contributor.authorLussier, Joey Allen
dc.contributor.examiningcommitteeHerbert, David (Chemistry)en_US
dc.contributor.examiningcommitteeWiebe, Christopher (Chemistry)en_US
dc.contributor.examiningcommitteeOliver, Derek (Electrical and computer engineering)en_US
dc.contributor.examiningcommitteeMar, Arthur (University of Alberta)en_US
dc.contributor.supervisorBieringer, Mario (Chemistry)en_US
dc.date.accessioned2018-09-12T16:25:10Z
dc.date.available2018-09-12T16:25:10Z
dc.date.issued2018en_US
dc.date.submitted2018-08-28T18:17:10Zen
dc.degree.disciplineChemistryen_US
dc.degree.levelDoctor of Philosophy (Ph.D.)en_US
dc.description.abstractSolid oxide fuel cells (SOFCs) are considered a promising energy conversion technology for the future. These devices show fuel flexibility, high conversion efficiency, and low emissions. Solid-state electrolytes play a crucial role in improving the performance of SOFCs. Currently, defect fluorites are most commonly used as electrolytes for commercial SOFCs. This thesis focuses primarily on fluorite and fluorite-related structures with the goal of furthering the understanding of oxide defect model systems. The Y2-xPrxO3+δ and Sc2-xVxO3+δ (0 ≤ x ≤ 2.00, and 0 ≤ δ ≤ 1) systems will be explored with a particular emphasis on synthesis and structure-reactivity relationships. Using in-situ methods, including powder diffraction (both X-ray and neutron), and thermogravimetric analysis, allows for a deeper understanding of reaction pathways, and provides insights into mechanistic details of reactions. Throughout this thesis, comments will be made on the importance of synthesis strategies and understanding structural details when designing functional materials.en_US
dc.description.noteOctober 2018en_US
dc.identifier.citationLussier, J. A.; Szkop, K. M.; Sharma, A. Z.; Wiebe, C. R.; Bieringer, M. Inorg. Chem. 2016, 55, 2381-2389en_US
dc.identifier.citationLussier, J. A.; Devitt, G.; Szkop, K. M.; Bieringer, M. J. Solid State Chem. 2016, 242(2), 126-132en_US
dc.identifier.citationLussier, J. A.; Simon, F. J.; Whitfield, P. S.; Singh, K.; Thangadurai, V. T. Bieringer, M. Inorg. Chem. 2018, 57, 5607-5614en_US
dc.identifier.urihttp://hdl.handle.net/1993/33320
dc.language.isoengen_US
dc.rightsopen accessen_US
dc.subjectSolid state chemistryen_US
dc.titleUnderstanding the structure and reactivity of solid state electrolyte model systemsen_US
dc.typedoctoral thesisen_US
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