Estudo da estrutura e propriedades elétricas da perovskita BaCe0,2Zr0,7X0,1O3-δ (X=Y, Er e Dy) para eletrólitos de células a combustível.
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Universidade Estadual de Ponta Grossa
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In view of the demand for clean and efficient energy sources, solid oxide fuel cells (SOFC)
emerge as an alternative able to produce electrical energy with high efficiency and without the
emission of greenhouse gases using hydrogen as fuel. The high operation temperature is the
main technological and economical obstacle to the extensive application of these type of fuel
cell. The use of proton conducting electrolytes is the best alternative to reduce the operation
temperature of SOFC, however the obtainment electrolytes combining stability and high
conductivity is necessary for that. Barium zirconate can combine these characteristics when
doped with certain metals, such as yttrium, but its high refractoriness hinders the capacity to
obtain dense microstructures. This work evaluates the possibility of obtaining
BaCe0,2Zr0,7X0,1O3-δ (X = Y, Dy, or Er) compositions from oxide precursors through solid state
reaction, and the effect of sintering temperature and time in the densification and grain growth.
The viability of using zinc oxide as a sintering agent was evaluated as well. The synthesis route
applied, with two calcination steps, was not sufficient to promote the development of the final
composition although, through structural analysis by Rietveld refinement of the sintered
product, it was possible to verify that the desired compositions were achieved. The effect
sintering time and temperature is small when compared with the effect obtained by the addition
of zinc oxide. Dysprosium provided the highest conductivities values, while the high grain
boundary resistivity on the yttrium containing composition caused it to produce a considerably
lower conductivity than the other compositions. Thus, dysprosium shows the greatest potential
as dopant for these zirconates
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SANTOS, Bruno Daniel. Estudo da estrutura e propriedades elétricas da perovskita BaCe0,2Zr0,7X0,1O3-δ (X=Y, Er e Dy) para eletrólitos de células a combustível. 2021. Dissertação (Mestrado em Engenharia e Ciências de Materiais) - Universidade Estadual de Ponta Grossa. Ponta Grossa. 2021.
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