Praseodymium doped ceria as electrolyte material for IT-SOFC applications

Authors
Shajahan, IrfanaAhn, JunsungNair, ParvathiMedisetti, SrikarPatil, SunainaNiveditha, V.Babu, G. Uday BhaskarDasari, Hari PrasadLee, Jong-Ho
Issue Date
2018-09-01
Publisher
ELSEVIER SCIENCE SA
Citation
MATERIALS CHEMISTRY AND PHYSICS, v.216, pp.136 - 142
Abstract
Praseodymium-doped ceria (PDC, Ce0.9Pr0.1O2) electrolyte material for intermediate temperature solid oxide fuel cells (IT-SOFCs) has been successfully synthesised by EDTA-citrate method. From X-Ray diffraction (XRD), fluorite structure along with a crystallite size of 5.4 nm is obtained for PDC nanopowder calcined at 350 degrees C/24 h. Raman spectroscopy confirmed the structure, presence of oxygen vacancies with the manifestation of the main peak at 457 cm(-1) and with a secondary peak at 550 cm(-1). From Transmission Electron Microscopy (TEM) analysis, the average particle size is around 7-10 nm and selected area electron diffraction (SAED) patterns further confirmed the fluorite structure of PDC nanopowder. The PDC nanopowder displayed a BET surface area of 65 m(2)/g with a primary particle size of similar to 13 nm (calculated from BET surface area). Dilatometer studies revealed a multi-step shrinkage behaviour with the multiple peaks at 522, 1171 and 1461 degrees C which may be originated due to the presence of multiple size hard agglomerates. The PDC electrolyte pellet sintered at 1500 degrees C displayed an ionic conductivity of 1.213E-03 S cm(-1) along with an activation energy of 1.28eV. Instead of a single fluorite structure, XRD of sintered PDC pellet showed multiple structures (Fluorite structure (CeO2) and cubic structure (PrO2).
Keywords
OXIDE FUEL-CELLS; STRUCTURAL CHARACTERISTICS; IONIC-CONDUCTIVITY; PHOTOCATALYTIC DEGRADATION; HYDROTHERMAL SYNTHESIS; CATALYTIC-ACTIVITY; THERMAL-EXPANSION; COMBUSTION METHOD; MIXED CONDUCTORS; SOLID-SOLUTIONS; OXIDE FUEL-CELLS; STRUCTURAL CHARACTERISTICS; IONIC-CONDUCTIVITY; PHOTOCATALYTIC DEGRADATION; HYDROTHERMAL SYNTHESIS; CATALYTIC-ACTIVITY; THERMAL-EXPANSION; COMBUSTION METHOD; MIXED CONDUCTORS; SOLID-SOLUTIONS; Fuel cells; Nanoparticles; Rare earth oxides; EDTA-Citrate method; Ceria; Dilatometer; Ionic conductivity; Sintering; IT-SOFC
ISSN
0254-0584
URI
https://pubs.kist.re.kr/handle/201004/120934
DOI
10.1016/j.matchemphys.2018.05.078
Appears in Collections:
KIST Article > 2018
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